US8129385B2 - Substituted 5-hydroxy-3,4,6,9,9a, 10-hexanhydro-2h-1-oxa04a,8a-diaza-anthracene-6,10-dioness - Google Patents
Substituted 5-hydroxy-3,4,6,9,9a, 10-hexanhydro-2h-1-oxa04a,8a-diaza-anthracene-6,10-dioness Download PDFInfo
- Publication number
- US8129385B2 US8129385B2 US11/919,386 US91938606A US8129385B2 US 8129385 B2 US8129385 B2 US 8129385B2 US 91938606 A US91938606 A US 91938606A US 8129385 B2 US8129385 B2 US 8129385B2
- Authority
- US
- United States
- Prior art keywords
- hydroxy
- dioxo
- optionally substituted
- methyl
- hexahydro
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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- PJOYIXCKEFRIIP-BYYBNQSPSA-N [H][C@]12CC[C@H](C3=CC=CC=C3)C[C@@]1([H])CO[C@]1([H])CN3C=C(C(=O)NCC4=C(F)C=C(F)C=C4)C(=O)C(O)=C3C(=O)N21 Chemical compound [H][C@]12CC[C@H](C3=CC=CC=C3)C[C@@]1([H])CO[C@]1([H])CN3C=C(C(=O)NCC4=C(F)C=C(F)C=C4)C(=O)C(O)=C3C(=O)N21 PJOYIXCKEFRIIP-BYYBNQSPSA-N 0.000 description 1
- HHEYPYRNMUTJDH-SJKOYZFVSA-N [H][C@]12CN3C=C(C(=O)NCC4=C(F)C=C(F)C=C4)C(=O)C(O)=C3C(=O)N1[C@H](C)CN2C(C)C Chemical compound [H][C@]12CN3C=C(C(=O)NCC4=C(F)C=C(F)C=C4)C(=O)C(O)=C3C(=O)N1[C@H](C)CN2C(C)C HHEYPYRNMUTJDH-SJKOYZFVSA-N 0.000 description 1
- UWBMGCCVQGNRNB-RDTXWAMCSA-N [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4)C(=O)C(O)=C3C(=O)N1[C@H](C)CCN2C(C)C Chemical compound [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4)C(=O)C(O)=C3C(=O)N1[C@H](C)CCN2C(C)C UWBMGCCVQGNRNB-RDTXWAMCSA-N 0.000 description 1
- UYGDHZSXXCJDHX-HOTGVXAUSA-N [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](C(C)C)CO2 Chemical compound [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](C(C)C)CO2 UYGDHZSXXCJDHX-HOTGVXAUSA-N 0.000 description 1
- HDBKQERHPKWSGY-FOIQADDNSA-N [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](C)CCN2CCC(C)C Chemical compound [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](C)CCN2CCC(C)C HDBKQERHPKWSGY-FOIQADDNSA-N 0.000 description 1
- WCWSTNLSLKSJPK-OTYXRUKQSA-N [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](C)CO2.[Na+] Chemical compound [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](C)CO2.[Na+] WCWSTNLSLKSJPK-OTYXRUKQSA-N 0.000 description 1
- ALUCCWDRSYBWPS-PBHICJAKSA-N [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](CC(C)C)CO2 Chemical compound [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](CC(C)C)CO2 ALUCCWDRSYBWPS-PBHICJAKSA-N 0.000 description 1
- RHHWSJIHXFCRJM-DOMZBBRYSA-N [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](CC)CO2 Chemical compound [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](CC)CO2 RHHWSJIHXFCRJM-DOMZBBRYSA-N 0.000 description 1
- OYVUESVXZTUFFS-XLIONFOSSA-N [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](CC1=CC=CC=C1)CO2 Chemical compound [H][C@]12CN3C=C(C(=O)NCC4=CC=C(F)C=C4F)C(=O)C(O)=C3C(=O)N1[C@H](CC1=CC=CC=C1)CO2 OYVUESVXZTUFFS-XLIONFOSSA-N 0.000 description 1
Classifications
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D498/00—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms
- C07D498/12—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms in which the condensed system contains three hetero rings
- C07D498/14—Ortho-condensed systems
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/495—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with two or more nitrogen atoms as the only ring heteroatoms, e.g. piperazine or tetrazines
- A61K31/4985—Pyrazines or piperazines ortho- or peri-condensed with heterocyclic ring systems
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/495—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with two or more nitrogen atoms as the only ring heteroatoms, e.g. piperazine or tetrazines
- A61K31/505—Pyrimidines; Hydrogenated pyrimidines, e.g. trimethoprim
- A61K31/519—Pyrimidines; Hydrogenated pyrimidines, e.g. trimethoprim ortho- or peri-condensed with heterocyclic rings
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/535—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one oxygen as the ring hetero atoms, e.g. 1,2-oxazines
- A61K31/5365—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one oxygen as the ring hetero atoms, e.g. 1,2-oxazines ortho- or peri-condensed with heterocyclic ring systems
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/55—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having seven-membered rings, e.g. azelastine, pentylenetetrazole
- A61K31/551—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having seven-membered rings, e.g. azelastine, pentylenetetrazole having two nitrogen atoms, e.g. dilazep
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K45/00—Medicinal preparations containing active ingredients not provided for in groups A61K31/00 - A61K41/00
- A61K45/06—Mixtures of active ingredients without chemical characterisation, e.g. antiphlogistics and cardiaca
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/0012—Galenical forms characterised by the site of application
- A61K9/0053—Mouth and digestive tract, i.e. intraoral and peroral administration
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/20—Pills, tablets, discs, rods
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P31/00—Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P31/00—Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
- A61P31/12—Antivirals
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P31/00—Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
- A61P31/12—Antivirals
- A61P31/14—Antivirals for RNA viruses
- A61P31/18—Antivirals for RNA viruses for HIV
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P37/00—Drugs for immunological or allergic disorders
- A61P37/02—Immunomodulators
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P43/00—Drugs for specific purposes, not provided for in groups A61P1/00-A61P41/00
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D471/00—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00
- C07D471/02—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00 in which the condensed system contains two hetero rings
- C07D471/04—Ortho-condensed systems
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D471/00—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00
- C07D471/12—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00 in which the condensed system contains three hetero rings
- C07D471/14—Ortho-condensed systems
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D471/00—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00
- C07D471/22—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00 in which the condensed systems contains four or more hetero rings
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D498/00—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms
- C07D498/02—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms in which the condensed system contains two hetero rings
- C07D498/04—Ortho-condensed systems
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D498/00—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms
- C07D498/12—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms in which the condensed system contains three hetero rings
- C07D498/20—Spiro-condensed systems
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D498/00—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms
- C07D498/22—Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms in which the condensed system contains four or more hetero rings
Definitions
- the present invention relates to novel compounds possessing an antiviral activity, in detail polycyclic carbamoylpyridone derivatives possessing an inhibitory activity against HIV integrase and a pharmaceutical composition containing the same, especially an anti-HIV agent.
- HIV human immunodeficiency virus
- AIDS acquired immunodeficiency syndrome
- the therapeutic agent for AIDS is mainly selected from a group of reverse transcriptase inhibitors (e.g., AZT, 3TC) and protease inhibitors (e.g., Indinavir), but they are proved to be accompanied by side effects such as nephropathy and the emergence of resistant viruses.
- AZT reverse transcriptase inhibitors
- Indinavir protease inhibitors
- the development of anti-HIV agents having the other mechanism of action has been desired.
- Reverse transcriptase inhibitors and protease inhibitors are clinically used as an anti-HIV agent, however agents having the same mechanism of action often exhibit cross-resistance or only an additional activity. Therefore, anti-HIV agents having the other mechanism of action are desired.
- an HIV integrase inhibitor has been focused on as an anti-HIV agent having a novel mechanism of action (Ref: Patent Documents 1 and 2).
- an anti-HIV agent having such a mechanism of action known are carbamoyl-substituted hydroxypyrimidinone derivative (Ref: Patent Documents 3 and 4) and carbamoyl-substituted hydroxypyrrolidione derivative (Ref: Patent Document 5).
- Patent Document 6 Example 8
- carbamoylpyridone derivatives include 5-alkoxypyridine-3-carboxamide derivatives and ⁇ -pyrone-3-carboxamide derivatives, which are a plant growth inhibitor or herbicide (Ref: Patent Documents 7-9).
- HIV integrase inhibitors include N-containing condensed cyclic compounds (Ref: Patent Document 10).
- the present inventors have intensively studied to find that a novel polycyclic carbamoylpyridone derivative possesses a potent HIV integrase inhibitory activity.
- a compound of the present invention and a pharmaceutical composition containing the same are useful as an antiviral agent, an antiretroviral agent, an anti-HIV agent, an anti-HTLV-1 (Human T cell leukemia virus type 1) agent, an anti-FIV (Feline immunodeficiency virus) agent or an anti-SIV (Simian immunodeficiency virus) agent, especially an anti-HIV agent or anti-AIDS agent, to accomplish the present invention shown below.
- Z 1 is NR 4 ;
- R 4 is hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted cycloalkyl lower alkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted aryl, optionally substituted aryl lower alkyl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycle lower alkyl, optionally substituted heterocycleoxy, hydroxy, optionally substituted amino, optionally substituted phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue, hydroxy substituted with optionally substituted phosphoric acid residue, amino substituted with optionally substituted phosphoric acid residue or lower alkyl substituted with optionally substituted phosphoric acid residue (the lower alkyl may be intervened by a heteroatom group selected from CO, O, S, SO, SO 2 , NR a (R a is
- Z 2 is optionally substituted lower alkylene or optionally substituted lower alkenylene, each may be intervened by a heteroatom group selected from O, S, SO, SO 2 , NR 5 (R 5 is hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted cycloalkyl lower alkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted aryl, optionally substituted aryl lower alkyl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycle lower alkyl, optionally substituted heterocycleoxy, hydroxy or optionally substituted amino, optionally substituted phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue, hydroxy substituted with optionally substituted phosphoric acid residue, amino substituted with optionally substituted phosphoric acid residue or lower alkyl substituted
- R 1 is hydrogen or lower alkyl
- X is a single bond, a heteroatom group selected from O, S, SO, SO 2 and NH, or lower alkylene or lower alkenylene each may be intervened by the heteroatom;
- R 2 is optionally substituted aryl
- R 3 is hydrogen, halogen, hydroxy, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycleoxy or optionally substituted amino;
- a ring is optionally substituted heterocycle
- R 14 and R X are independently hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted cycloalkyl lower alkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryl dower alkyl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycle lower alkyl, optionally substituted heterocycleoxy, optionally substituted phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue, hydroxy substituted with optionally substituted phosphoric acid residue, amino substituted with optionally substituted phosphoric acid residue or lower alkyl substituted with optionally substituted phosphoric acid residue (the lower alkyl may be intervened by a heteroatom group selected from O, S, SO, SO 2 , NR 5
- a broken line represents the presence or absence of a bond, provided that when the broken line represents the presence of a bond, R X is not present;
- R 1 is hydrogen or lower alkyl
- X is a single bond, a heteroatom group selected from O, S, SO, SO 2 and NH, or lower alkylene or lower alkenylene each may be intervened by the heteroatom group;
- R 2 is optionally substituted aryl
- R 3 is hydrogen, halogen, hydroxy, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycleoxy or optionally substituted amino)
- D ring is optionally substituted heterocycle
- R 1 is hydrogen or lower alkyl
- X is a single bond, a heteroatom group selected from O, S, SO, SO 2 and NH, or lower alkylene or lower alkenylene each may be intervened by the heteroatom group;
- R 2 is optionally substituted aryl
- R 3 is hydrogen, halogen, hydroxy, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycleoxy or optionally substituted amino)), its pharmaceutically acceptable salt, or solvate thereof.
- R 3 is hydrogen, halogen, hydroxy, lower alkyl, lower alkenyl, lower alkoxy, lower alkenyloxy or optionally substituted amino.
- a ring is optionally substituted heterocycle
- R 14 and R X are independently hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted cycloalkyl lower alkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryl lower alkyl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycle lower alkyl, optionally substituted heterocycleoxy, optionally substituted phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue, hydroxy substituted with optionally substituted phosphoric acid residue, amino substituted with optionally substituted phosphoric acid residue or lower alkyl substituted with optionally substituted phosphoric acid residue (the lower alkyl may be intervened by a heteroatom group selected from O, S, SO, SO 2 , NR 5 (
- a broken line represents the presence or absence of a bond, provided that when the broken line represents the presence of a bond, R X is not present;
- R 1 is hydrogen or lower alkyl
- X is a single bond, a heteroatom group selected from O, S, SO, SO 2 and NH, or lower alkylene or lower alkenylene each may be intervened by the heteroatom group;
- R 2 is optionally substituted aryl
- R 3 is hydrogen, halogen, hydroxy, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycleoxy or optionally substituted amino), its pharmaceutically acceptable salt, or solvate thereof
- R X is hydrogen
- R 14 is hydrogen or optionally substituted lower alkyl.
- a ring is an optionally substituted and optionally condensed 5- to 7-membered heterocycle containing 1 to 2 hetero atom(s);
- R 14 and R X are independently hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted cycloalkyl lower alkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryl lower alkyl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycle lower alkyl, optionally substituted heterocycleoxy, optionally substituted phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue, hydroxy substituted with optionally substituted phosphoric acid residue, amino substituted with optionally substituted phosphoric acid residue or lower alkyl substituted with optionally substituted phosphoric acid residue (the lower alkyl may be intervened by a heteroatom group selected from O, S, SO, SO 2 , NR 5 (
- R 3 is hydrogen, halogen, hydroxy, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycleoxy or optionally substituted amino), its pharmaceutically acceptable salt, or
- R 1 is hydrogen or lower alkyl
- R is independently selected from halogen and Substituent group S1;
- Substituent group S1 (: optionally substituted phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue, hydroxy substituted with optionally substituted phosphoric acid residue, amino substituted with optionally substituted phosphoric acid residue, or lower alkyl substituted with optionally substituted phosphoric acid residue (wherein the lower alkyl may be intervened with a heteroatom group(s) selected from CO, O, O, S, SO, SO 2 , NR a (R a is hydrogen or lower alkyl), —N ⁇ and ⁇ N—), lower alkoxy lower alkyl, amino lower alkyl optionally substituted with mono- or di-lower alkyl, halogenated lower alkyl, lower alkoxy, carbamoyl optionally substituted with mono- or di-lower alkyl, optionally substituted lower alkyl sulfonyl amino, halogenated lower alkoxy
- n is an integer of 0 to 3, its pharmaceutically acceptable salt, or solvate thereof.
- Substituent group S2 hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted cycloalkyl lower alkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryl lower alkyl, optionally substituted aryloxy, optionally substituted heterocycle, optionally substituted heterocycle lower alkyl, optionally substituted heterocycleoxy, hydroxy, optionally substituted amino, optionally substituted lower alkylcarbonyl, optionally substituted cycloalkylcarbonyl, optionally substituted cycloalkyl lower alkylcarbonyl, optionally substituted lower alkoxycarbonyl, optionally substituted arylcarbonyl, optionally substituted aryl lower alkylcarbonyl, optionally substituted aryl oxycarbonyl, optionally substituted heterocycle lower alkyl
- D ring is optionally substituted heterocycle
- R 1 is hydrogen or lower alkyl
- X is a single bond, a heteroatom group selected from O, S, SO, SO 2 and NH, or lower alkylene or lower alkenylene each may be intervened by the heteroatom group;
- R 2 is optionally substituted aryl
- R 3 is hydrogen, halogen, hydroxy, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycleoxy or optionally substituted amino), pharmaceutically acceptable salt, or solvate thereof
- R e is one or two halogen;
- R z is C 1-8 alkyl, C 6-14 arylC 1-8 alkyl, C 6-14 aryl, or alkoxy; and
- P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R z is C 1-8 alkyl, C 6-14 arylC 1-8 alkyl, C 6-14 aryl, or alkoxy; to form a compound of formula (I-20a).
- R e is one or two halogen;
- R z is C 1-8 alkyl, C 6-14 arylC 1-8 alkyl, C 6-14 aryl, or alkoxy; and
- P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R z is C 1-8 alkyl, C 6-14 arylC 1-8 alkyl, C 6-14 aryl, or alkoxy; to form a compound of formula (I-20b).
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; with a compound of the formula
- R e is one or two halogen;
- R z is C 1-8 alkyl;
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen; and R 50 is C 1-8 alkyl; and P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R z is C 1-8 alkyl
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; to form a compound of the formula (I-24a).
- R e is one or two halogen;
- R z is C 1-8 alkyl;
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen;
- R 50 is C 1-8 alkyl; and
- P 1 is C 6-14 arylC 1-8 alkyl; with a compound of the formula
- R z is C 1-8 alkyl; and R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; to form a compound of the formula (I-24b).
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; to form a compound of the formula (I-24b).
- R e is one or two halogen
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl
- P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen; and R 50 is C 1-8 alkyl; and P 1 is C 6-14 arylC 1-8 alkyl; with a racemic compound of the formula
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; to form a racemic compound of the formula (I-25).
- R e is one or two halogen
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl
- P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen; R 50 is C 1-8 alkyl; and P 1 is C 6-14 arylC 1-8 alkyl; with a racemic compound of the formula
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; to form a racemic compound of formula (I-26).
- R e is halogen; and P 1 is C 6-14 arylC 1-8 alkyl; comprising condensing a compound of the formula
- R e is one or two halogen: R 50 is C 1-8 alkyl; and P 1 is C 6-14 arylC 1-8 alkyl; with a racemic compound of the formula
- the present invention further provides a pharmaceutical composition containing any of the compounds shown above, a pharmaceutically acceptable salt or a solvate thereof, especially an anti-HIV agent.
- the present invention compounds possess an integrase inhibitory activity and/or a cell-growth inhibitory activity against virus, especially HIV. Accordingly, they are useful for the prevention or treatment of various diseases mediated by integrase or virus infection diseases (e.g., AIDS).
- the present invention further provides a process for preparing a diastereomer, a mixture thereof, or racemate.
- “Lower alkyl” means a straight or branched C1 to C10 alkyl such as methyl, ethyl, n-propyl, i-propyl, t-butyl, isobutyl, sec-butyl, n-pentyl, and n-hexyl, and preferred is C1 to C3 alkyl, more preferred is methyl, ethyl or n-propyl, n-pentyl, isopentyl, neopentyl, tert-pentyl, n-hexyl, isohexyl, n-heptyl, n-octyl, n-nonyl, and n-decyl, preferably C1 to C6 lower alkyl, more preferably C1 to C4 lower alkyl such as methyl, ethyl, n-propyl, isopropyl, n-butyl, isobut
- “Lower alkenylene” means a straight or branched C2 to C6 alkenylene, which consists of the above “Lower alkylene” having one or more double bonds, such as vinylene, propylene, or butenylene, preferably a straight C2 to C3 alkenylene such as vinylene or propylene.
- “Lower alkyl” means a straight or branched C1 to C10 alkyl such as methyl, ethyl, n-propyl, i-propyl, t-butyl, isobutyl, sec-butyl, n-pentyl, and n-hexyl, and preferred is C1 to C3 alkyl, more preferred is methyl, ethyl or n-propyl, n-pentyl, isopentyl, neopentyl, tert-pentyl, n-hexyl, isohexyl, n-heptyl, n-octyl, n-nonyl, and n-desyl, preferably C1 to C6 lower alkyl, more preferably C1 to C4 lower alkyl such as methyl, ethyl, n-propyl, isopropyl, n-butyl, isobuty
- the lower alkyl When lower alkyl is intervened with “—N ⁇ ” or “ ⁇ N—”, the lower alkyl may have a double bond to form —CH 2 —N ⁇ CH 2 , —CH ⁇ N—CH 3 etc.
- Alkenyl means a straight or branched C2 to C8 alkenyl, which consists of the above “alkyl” having one or more double bonds, such as vinyl, 1-propenyl, 2-propenyl, 1-butenyl, 2-butenyl, 3-butenyl, 1,3-butadienyl, and 3-methyl-2-butenyl, preferably C2 to C6 alkenyl, and more preferably C2 to C4 alkenyl.
- “Lower alkenyloxy” means oxy attached to the above lower alkenyl, such as vinyloxy, 1-propenyloxy, 2-propenyloxy, 1-butenyloxy, 2-butenyloxy, 3-butenyloxy, 1,3-butadienyloxy, and 3-methyl-2-butenyloxy.
- Cycloalkyl means C3 to C8 cyclic saturated hydrocarbon, such as cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cyclopentyl, and cyclooctyl, preferably C3 to C6 cycloalkyl.
- Cycloalkyl lower alkyl means lower alkyl substituted with the above cycloalkyl, such as cyclopropylmethyl, cyclopropylethyl, cyclobutylmethyl, cyclopentylmethyl, cyclohexylmethyl, and cyclohexylethyl, and preferably C3 to C6 cycloalkyl lower alkyl.
- Aryl means monocyclic aromatic hydrocarbon (e.g., phenyl) and polycyclic hydrocarbon (e.g., 1-naphthyl, 2-naphthyl, 1-anthryl, 2-anthryl, 9-anthryl, 1-phenanthryl, 2-phenanthryl, 3-phenanthryl, 4-phenanthryl, 9-phenanthryl), preferably phenyl or naphthyl (e.g., 1-napthyl, 2-naphthyl).
- Alkyl or “aryl lower alkyl” means the above lower alkyl substituted with 1 to 3 of the above aryl, such as benzyl, diphenylmethyl, triphenylmethyl, phenethyl, 1-napthylmethyl, 2-napthylmethyl, preferably benzyl.
- Aryloxy means oxy attached to the above aryl, such as 1-naphthyloxy, 2-naphthyloxy, 1-anthryloxy, 2-anthryloxy, 9-anthryloxy, 1-phenanthryloxy, 2-phenanthryloxy, 3-phenanthryloxy, 4-phenanthryloxy, and 9-phenanthryloxy, preferably phenyloxy or naphthyloxy (e.g., 1-napthyloxy, 2-naphthyloxy).
- Heterocyclic group means “heteroring” or “heteroaryl”.
- Heteroring means a non-aromatic ring which has at least one of N, O and/or S in the ring and may be bonded at any substitutable position, preferably 5- to 7-membered ring, such as 1-pyrrolyl, 2-pyrrolyl, 3-pyrrolyl, 1-pyrrolidinyl, 2-pyrrolidinyl, 3-pyrrolidinyl, 1-imidazolyl, 2-imidazolyl, 4-imidazolyl, 1-imidazolidinyl, 2-imidazolidinyl, 4-imidazolidinyl, 1-pyrazolinyl, 3-pyrazolinyl, 4-pyrazolinyl, 1-pyrazolidinyl, 3-pyrazolidinyl, 4-pyrazolidinyl, piperidino, 2-piperidyl, 3-piperidyl, 4-piperidyl, 1-piperadinyl, 2-piperadinyl, 2-morpholinyl, 3-morpholinyl, morpholino, and tetra
- Heteroaryl means monocyclic aromatic hetero-type ring or condensed aromatic hetero-type ring.
- “Monocyclic aromatic hetero-type ring” means a 5- to 8-membered aromatic ring, which contains 1 to 4 of O, S, P and/or N and may be bonded at any substitutable position.
- Condensed aromatic hetero-type ring means a group wherein an aromatic ring containing 1 to 4 of O, S, P and/or N is condensed with 1 to 4 of 5- to 8-membered aromatic ring(s) or the other 5- to 8-membered aromatic heteroring(s).
- heteroaryl examples include furyl (e.g., 2-furyl, 3-furyl), thienyl (e.g., 2-thienyl, 3-thienyl), pyrrolyl (e.g., 1-pyrrolyl, 2-pyrrolyl, 3-pyrrolyl), imidazolyl (e.g., 1-imidazolyl, 2-imidazolyl, 4-imidazolyl), pyrazolyl (e.g., 1-pyrazolyl, 3-pyrazolyl, 4-pyrazolyl), triazolyl (e.g., 1,2,4-triazole-1-yl, 1,2,4-triazole-3-yl, 1,2,4-triazole-4-yl), tetrazolyl (e.g., 1-tetrazolyl, 2-tetrazolyl, 5-tetrazolyl), oxazolyl (e.g., 2-oxazolyl, 4-oxazolyl, 5-oxazolyl), e
- Heterocycle means a cycle which can be lead to the above heterocyclic group.
- Heterocyclic group lower alkyl or “Heterocycle lower alkyl” means lower alkyl substituted with the above heterocyclic group.
- Heterocyclic group oxy or “Heterocycle oxy” means an oxy attached to the above heterocyclic group.
- Heterocyclic group carbonyl or “Heterocyclecarbonyl” means a carbonyl attached to the above heterocyclic group
- Lower alkoxy or “alkoxy” means an oxy attached to the above lower alkyl, such as methoxy, ethoxy, n-propoxy, isopropoxy, n-butoxy, isobutoxy, tert-butoxy.
- Substituent group B examples include hydroxy, carboxy, halogen (F, Cl, Br, I), halo lower alkyl (e.g., CF 3 , CH 2 CF 3 , CH 2 CCl 3 ), halo lower alkoxy (e.g., OCF 3 , OCH 2 CF 3 , OCH 2 CCl 3 ), lower alkyl (e.g., methyl, ethyl, isopropyl, tert-butyl), lower alkenyl (e.g., vinyl), lower alkynyl (e.g., ethynyl), cycloalkyl (e.g., cyclopropyl), cycloalkenyl (e.g., cyclopropenyl), lower alkoxy (e.g., methoxy, ethoxy, propoxy, butoxy), lower alkenyloxy (e.g., vinyloxy, allyloxy), lower alkoxycarbonyl (
- substituents of “optionally substituted amino” or “optionally substituted carbamoyl” include mono- or di-lower alkyl, lower alkylcarbonyl, lower alkylsulfonyl, optionally substituted lower alkyl (e.g., methyl, ethyl, isopropyl, benzyl, carbamoylalkyl (e.g., carbamoylmethyl), mono- or di-lower alkylcarbamoyl lower alkyl (e.g., dimethylcarbamoylethyl), hydroxyl lower alkyl, heterocycle lower alkyl (e.g., morpholinoethyl, tetrahydropyranylethyl), alkoxycarbonyl lower alkyl (e.g., ethoxycarbonylmethyl, ethoxycarbonylethyl), mono- or di-lower alkylamino lower alkyl (e.g., dimethylamino
- N-containing heterocycle which optionally contains S and/or O in the ring (preferably 5- to 7-membered ring or saturated ring) and is optionally substituted with oxo or hydroxy.
- the optional S atom in the ring may be substituted with oxo.
- the N-containing heterocycle is preferably a 5- or 6-membered ring such as piperadinyl, piperidino, morpholino, pyrrolidino, 2-oxopiperidino, 2-oxopyrrolidino, 4-hydroxymorpholino.
- Phosphoric acid residue means a group shown of the formula: —PO(OH) 2 .
- Optionally substituted phosphoric acid residue means a phosphoric acid residue wherein the OH part and/or a hydrogen of the OH is optionally substituted with a phosphoric acid residue, preferably shown by the formula:
- R A and R B each is independently OR C or NR D R E (wherein R C , R D and R E are each independently hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted aryl, optionally substituted heterocyclic group, or R D and R E taken together with the neighboring N atom may form an optionally substituted heterocycle (preferably 5- to 6-membered ring)) or R A and R B taken together with the neighboring P atom may form an optionally substituted heterocycle (preferably 5- to 6-membered ring)).
- R A and R B are both OR C , or one of them is ORG and the other is NR D R E .
- R C , R D and R E each is preferably, independently, lower alkyl (e.g., methyl, ethyl).
- the optionally substituted heterocycle formed by R A and R B taken together with the neighboring P atom may be the following structure:
- Hydroxy substituted with optionally substituted phosphoric acid residue is preferably hydroxy substituted with a phosphoric acid residue substituted with di lower alkyls, and more preferably a group of the formula:
- Amino substituted with optionally substituted phosphoric acid residue is preferably amino substituted with a phosphoric acid residue substituted with di lower alkyls, and more preferably a group of the formula:
- R 1 is hydrogen or lower alkyl, preferably hydrogen.
- X is a single bond, a heteroatom group selected from O, S, SO, SO 2 and NH (hereafter also referred to as “M”), or lower alkylene or lower alkenylene each may be intervened by the heteroatom.
- M a heteroatom group selected from O, S, SO, SO 2 and NH
- lower alkylene or lower alkenylene each may be intervened by the heteroatom.
- the heteroatom group is present between carbon atoms which constitutes the alkylene or alkenylene.
- the heteroatom group is attached to the N atom of the carbamoyl group neighboring to X.
- the heteroatom group (M) may be the same or different, and one or more atoms. Examples of that lower alkylene is intervened by a heteroatom group include -M-CH 2 —, —CH 2 -M-CH 2 —, —CH 2 -M-, and —CH 2 -M-M-CH 2 —.
- X is preferably a spacer consisting 1 to 3 joined atoms.
- X is more preferably lower alkylene or lower alkenylene each may be intervened by a heteroatom group, or O.
- X is most preferably C1 to C3 alkylene, C2 to C3 alkenylene, or O. Especially preferred is methylene or O.
- R 2 is optionally substituted aryl, preferably phenyl.
- a substituent on the aryl is the same or different, 1 to 3, preferably 1 to 2 substituent(s), including preferably halogen, hydroxy, amino, lower alkylamino, cyano, carboxy, formyl, oxo, lower alkyl, lower alkoxy, lower alkylthio, carbamoyl, and lower alkylcarbamoyl, and Substituent group S1(: optionally substituted phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue, hydroxyl substituted with optionally substituted phosphoric acid residue, amino substituted with optionally substituted phosphoric acid residue, lower alkyl substituted with optionally substituted phosphoric acid residue (said lower alkyl may be intervened with a hetero atom group(s) selected from O, S, SO, SO 2 , NR
- a substituent on the aryl is preferably at the 4-position.
- R 2 is more preferably phenyl or phenyl substituted with at least halogen, and most preferably 4-halogenophenyl (e.g., 4-F-phenyl).
- R 2 is preferably phenyl optionally substituted with 1 to 3 R(s) mentioned below.
- R each is independently a group selected from halogen and Substituent group S1.
- Substituent group S1 optionally substituted phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue, hydroxyl substituted with optionally substituted phosphoric acid residue, amino substituted with optionally substituted phosphoric acid residue, lower alkyl substituted with optionally substituted phosphoric acid residue (said lower alkyl may be intervened by a heteroatom group(s) selected from CO, O, S, SO, SO 2 , NR a (R a is hydrogen or lower alkyl), —N ⁇ and ⁇ N—), lower alkoxy lower alkyl, optionally substituted amino lower alkyl (the substituent: mono- or di-lower alkyl, lower alkylcarbonyl, or lower alkylsulfonyl), halogenated lower alkyl, lower alkoxy, optionally substituted carbamoyl (the substituent: mono- or di-lower alkyl, lower al
- m is an integer of 0 to 3, preferably 0 or 1 to 2, when in is 1, R is preferably halogen.
- R is more preferably the same or different group selected from halogen, lower alkyl, lower alkoxy, lower alkoxy lower alkyl, halogenated lower alkyl, halogenated lower alkoxy, lower alkylsulfonylamino, carbamoyl, and lower alkylcarbamoyl. More preferably, R is two halogens, or halogen and another group. R preferably locates at the 4-position and optional another position of the benzene ring.
- R 3 can be a various substituent which does not bring a negative effect to the pharmacological activity, including hydrogen, halogen, hydroxy, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycleoxy, and optionally substituted amino.
- substituent of “optionally substituted” include halogen, hydroxy, amino, lower alkylamino, cyano, carboxy, formyl, oxo, lower alkyl, lower alkoxy, lower alkylthio, carbamoyl, lower alkylcarbamoyl, aryl, heterocyclic group, lower alkylcarbonyl, lower alkylcarbonyloxy, lower alkoxycarbonyl, halogenated lower alkyl, halogenated lower alkoxy, and preferably halogen, hydroxy, amino, lower alkylamino, lower alkyl, and lower alkoxy.
- R 3 is more preferably hydrogen, halogen, hydroxy, lower alkyl, lower alkenyl, lower alkoxy, lower alkenyloxy or optionally substituted amino, and most preferably hydrogen or lower alkyl (e.g., methyl), esp. hydrogen.
- Z 2 shows C, CH, optionally substituted lower alkylene, lower alkenylene etc., and Z 2 and R 4 of Z 1 taken together form a ring, whereby compound (I) shows a tricyclic compound (I-1) or (I-11) shown below, or its derivative, tetracyclic compound.
- a ring is optionally substituted heterocycle containing at least an N atom.
- the heterocycle is a 5- to 7-membered ring which contains preferably 1 to 3, more preferably 2 to 3 atoms of O, S and/or N.
- the heterocycle is preferably selected from the above heterocycle.
- the arc optionally contains 1 to 2 heteroatom(s) at any possible position.
- One of preferable embodiments of A ring is an optionally substituted ring shown below.
- a ring is preferably a ring of (a), (b), or (c).
- Z is preferably O or NR 19 .
- examples of R 19 include 1) hydrogen, 2) optionally substituted lower alkyl (the substituent is e.g., amino optionally substituted with mono- or di-lower alkyl; cycloalkyl; hydroxy; optionally substituted heterocyclic group (preferably 5- to 7-membered ring, e.g., furyl, thienyl, thiazolyl, pyridil, morpholino, imidazole; examples of the substituent include lower alkyl, halogen): optionally substituted heterocyclecarbonyl (the heterocycle is preferably 5- to 7-membered ring, e.g., morpholinocarbonyl); optionally substituted phenyl (the substituent is e.g., lower alkyl, amino, lower alkylamino, hydroxy, halogen, halogenated lower alkyl, lower alkoxy, halogenated lower alkoxy, lower alkylthio, lower alkylsulfony
- the other substituent on A ring may be selected from R 15 to R 18 or Substituent group S2, preferably lower alkyl.
- Substituents on A ring may form a condensed ring or a spiro ring as mentioned below, whereby compound (I) includes a tetracyclic compound.
- a ring is more preferably any of the following rings:
- R 20 to R 40 are each independently a group selected from Substituent group S2, or any two groups of R 20 to R 40 , which bonds to the same carbon atom, taken together with the carbon atom, may form a spiro ring, i.e., an optionally substituted carbocycle or optionally substituted heterocycle, or each combination of (R 20 and R 22 ), (R 23 and R 24 ), (R 25 and R 26 ), (R 27 and R 29 ), (R 30 and R 31 ), (R 32 and R 34 , (R 35 and R 36 ), (R 37 and R 38 ), and (R 39 and R 40 ), taken together with the neighboring atom, may form an optionally substituted carbocycle or optionally substituted heterocycle.
- Substitution group S2 hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted cycloalkyl lower alkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryl lower alkyl, optionally substituted aryloxy optionally substituted heterocycle, optionally substituted heterocycle lower alkyl, optionally substituted heterocycleoxy, hydroxy, optionally substituted amino, optionally substituted lower alkylcarbonyl, optionally substituted cycloalkylcarbonyl, optionally substituted cycloalkyl lower alkylcarbonyl, optionally substituted lower alkoxycarbonyl, optionally substituted arylcarbonyl, optionally substituted aryl lower alkylcarbonyl, optionally substituted aryl oxycarbonyl, optionally substituted heterocycle lower alkylcarbonyl,
- R 20 to R 40 each is preferably hydrogen, optionally substituted lower alkyl (examples of the substituent: OH, lower alkoxy, cycloalkyl, lower alkylthio, lower alkylsulfonyl, heterocyclic group, aryl, optionally substituted amino (examples of the substituent: lower alkyl, acyl)), cycloalkyl, optionally substituted aryl (examples of the substituent: OH, lower alkyl), and optionally substituted heterocyclic group.
- R 20 to R 25 , R 27 to R 30 , and R 32 to R 39 each is preferably hydrogen, C1-C8 alkyl, C6-C14 aryl C1-C8 alkyl, C6-C14 aryl, or alkoxy.
- R 26 , R 31 , and R 40 each is preferably hydrogen, C3-6 cycloalkyl, heterocycle, or C1-8 alkyl optionally substituted with hydroxy, C3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8 alkyl or C1-8 alkyl.
- a ring is A-1, preferred is that 1) Z is NR 26 and R 26 and R 24 taken together form heterocycle, and the others are hydrogens; 2) Z is O or NR 26 , (R 20 and R 22 ) or (R 23 and R 24 taken together form cycloalkyl which is substituted with phenyl, the others are hydrogens or optionally substituted lower alkyl.
- a ring is A-2, preferred is that 1) Z is O, R 27 or R 28 is lower alkyl, and the others are hydrogens; 2) Z is NR 31 and R 30 and R 31 taken together form heterocycle and the others are hydrogens, or R 27 and R 29 taken together form cycloalkyl and the others are hydrogens; 3) Z is O, R 27 and R 29 taken together form cycloalkyl which may be condensed with phenyl, and the others are hydrogens
- R 14 and R X are each independently hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted cycloalkyl lower alkyl, optionally substituted lower alkenyl, optionally substituted lower alkoxy, optionally substituted lower alkenyloxy, optionally substituted aryl, optionally substituted aryl lower alkyl, optionally substituted aryloxy, optionally substituted heterocyclic group, optionally substituted heterocycle lower alkyl, optionally substituted heterocycleoxy, hydroxy, optionally substituted amino, optionally substituted lower alkylcarbonyl, optionally substituted cycloalkylcarbonyl, optionally substituted cycloalkyl lower alkylcarbonyl, optionally substituted lower alkoxycarbonyl, optionally substituted arylcarbonyl, optionally substituted aryl lower alkylcarbonyl, optionally substituted aryloxycarbonyl, optionally substituted heterocycle lower alky
- R 14 and R x are each independently, preferably, hydrogen, hydroxyl, optionally substituted lower alkyl (the substituent is preferably, e.g., amino, lower alkyl amino, hydroxy, lower alkoxy).
- R 14 and R x are preferably hydrogens.
- a broken line in the compound (I-1) represents the presence or absence of a bond, provided that when the broken line represents the presence of a bond, R X is not present.
- the compound (I) includes the following compounds.
- F ring means the same heterocycle as A ring, preferably 5- to 7-membered ring, and the substituents on F ring are the same as those for A ring.
- the other symbols are as defined above.
- R 15 to R 19 are each independently hydrogen or a group selected from the above Substituent group S2, or each combination of (R 15 and R 16 ), (R 17 and R 18 ), (R 10 and R 18 ), and (R 18 and R 19 ) taken together with the neighboring atom(s), may form an optionally substituted carbocycle (preferably 5- to 6-membered ring) or an optionally substituted heterocyle (preferably 5- to 6-membered ring); or each combination of (R 15 and R 16 ) and (R 17 and R 18 ) taken together may form oxo)
- Compound (I-3) is preferably as follows.
- R 1 is hydrogen; R 3 is hydrogen; m is 1 or 2; R 14 is hydrogen.
- R is each independently halogen, halogenated lower alkyl, lower alkoxy, halogenated lower alkoxy, lower alkoxy lower alkyl, hydroxy lower alkyl, optionally substituted amino lower alkyl (the substituent is mono- or di-lower alkyl, lower alkylcarbonyl, or lower alkylsulfonyl), optionally substituted carbamoyl (the substituent is mono- or di-lower alkyl, lower alkylcarbonyl, or lower alkylsulfonyl), phosphoric acid residue, aryl substituted with optionally substituted phosphoric acid residue, aralkyl substituted with optionally substituted phosphoric acid residue or sulfonylamino optionally substituted with lower alkyl; R 1 is hydrogen; R 3 is hydrogen; R 14 is hydrogen, hydroxyl or lower alkyl optionally substituted with mono- or di-lower alkylamino; Z is O or NR 19 (R 19 is
- R is each independently, —F, —CF 3 , —OMe, —OCF 3 , —CH 2 OMe, —CH 2 OH, —CH 2 N(Me) 2 , —CONHMe, —CON(Me) 2 , —CH 2 PO(OEt) 2 , —PO(OEt) 2 , —NHSO 2 Me, or —NMeSO 2 Me;
- R 1 is hydrogen;
- R 3 is hydrogen;
- m is 1 or 2;
- R 14 is hydrogen, hydroxyl or —CH 3 N(Me) 2 ;
- Z is O or NR 19 (R 19 is hydrogen or CH(Me) 2 , —(CH 2 ) 2 OMe, —(CH 2 ) 2 PO(OEt) 2 ).
- R 15 and R 16 are hydrogens; R 17 and R 18 are hydrogens or taken together with the neighboring atom form a 3- to 7-membered carbocycle; and/or Z is O or NH. This case preferably also satisfies the above (2) or (3).
- D ring means the same heterocycle as A ring, preferably 5- to 7-membered ring, and the substituents on D ring are the same as those for A ring.
- the other symbols are as defined above.
- the structure of compound (I) has at least the following characteristics.
- a substituted carbamoyl group (—CONR 1 XR 2 ) is attached to the position neighboring to the oxo group on the condensed heterocycle.
- the above structure contributes to a remarkably potent integrase inhibitory activity and/or cell-growth inhibitory activity against virus including HIV.
- the structures of the other parts such as Z 1 , Z 2 , and R 3 each may be of variety, being optionally substituted or optionally condensed, and its condensed ring is also optionally substituted.
- the present invention provides a pharmaceutically acceptable salt or a solvate of compound (I). All theoretically possible tautomer, geometrical isomer, optically active compound, and race mate thereof are within the scope of the invention.
- salts of a compound of the present invention include, as basic salts, for example, alkali metal salts such as sodium or potassium salts; alkaline-earth metal salts such as calcium or magnesium salts; ammonium salts; aliphatic amine salts such as trimethylamine, triethylamine, dicyclohexylamine, ethanolamine, diethanolamine, triethanolamine or procaine salts; aralkyl amine salts such as N,N-dibenzylethylenediamine salts; heterocyclic aromatic amine salts such as pyridin salts, picoline salts, quinoline salts or isoquinoline salts; quaternary ammonium salts such as tetramethylammonium salts, tetraethylammonium salts, benzyltrimethylammonium salts, benzyltriethylammonium salts, benzyltributylammonium salts, methyltriocty,
- Acid salts include, for example, mineral acid salts such as hydrochloride, sulfates salts, nitrate salts, phosphates salts, carbonates salts, hydrogencarbonates or perchlorate; organic acid salts such as acetates, propionates, lactates, maleates, fumarates, tararic acid salts, malates, citrates salts, ascorbates, formic acid; sulfonates such as methanesulfonates, isethionates, benzenesulfonates, or p-toluenesulfonates; and acidic amino acid salts such as aspartates or glutamates.
- mineral acid salts such as hydrochloride, sulfates salts, nitrate salts, phosphates salts, carbonates salts, hydrogencarbonates or perchlorate
- organic acid salts such as acetates, propionates, lactates, maleates, fumarates, tararic acid
- Solvates of a compound of the present invention include alcholates and hydrates.
- L 1 is a leaving group (e.g.; halogen); P 1 and P 2 are a hydroxy protecting group; P 3 is a carboxy protecting group (e.g.: lower alkyl); R a and R b are hydrogen or a substituent on an amino group)
- Examples of a hydroxy protecting group (P 1 , P 2 ) include acyl (e.g.: acetyl, pivaloyl, benzoyl), aralkyl (e.g.: benzyl), lower alkyl (e.g.: methyl), alkoxyalkyl (e.g.: methoxymethyl, methoxyethyl), lower alkylsulfonyl (e.g.: methanesulfonyl), arylsulfonyl (e.g.: benzenesulfonyl, toluenesulfonyl), alkoxycarbonyl (e.g.: methoxycarbonyl) and the like.
- acyl e.g.: acetyl, pivaloyl, benzoyl
- aralkyl e.g.: benzyl
- lower alkyl e.g.: methyl
- alkoxyalkyl e.
- lower alkyl e.g.; methyl, ethyl
- aralkyl e.g.: benzyl
- the present step is a reaction for condensing a compound (II) and a compound (III) to synthesize a compound (IV).
- the reaction may be performed according to the condition for a reaction of amidating carboxylic acid which is generally performed.
- a compound (II) may be reacted as it is, or may be reacted after converted into corresponding acid chloride or active ester.
- the reaction is performed in a suitable solvent in the presence of a condensing agent.
- dicyclohexylcarbodiimide 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide hydrochloride and the like may be used.
- a reagent such as 1-hydroxybenzotriazole and N-hydroxysuccinimide, or a base such as triethylamine, N-methylmorpholine, and pyridine may be added.
- a reaction temperature is 0 to 150° C., preferably room temperature to 70° C.
- reaction solvent a non-protonic solvent can be broadly used, and tetrahydrofuran (THF), 1,4-dioxane, dimethylformamide (DMF), methylene chloride, chloroform and the like are preferable.
- a reaction time is a few minutes to a few tens hours, preferably 9 to 17 hours.
- the present step is a reaction for introducing a protected hydroxy group (OP 1 ) into a compound (IV) to produce a compound (V).
- the reaction may be performed according to the condition for an alkoxylating reaction which is generally performed.
- a compound (V) in which P 1 is methyl can be synthesized by reacting a compound (IV) with metal alkoxide (e.g.: sodium methoxide).
- metal alkoxide e.g.: sodium methoxide
- a reaction temperature is 0 to 200° C., preferably 80 to 120° C.
- reaction solvent alcohol, dimethylformamide (DMF), and dimethyl sulfoxide (DMSO) are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 5 to 10 hours.
- the present step is a reaction for protecting a hydroxy group of a compound (V) to produce a compound (VI).
- the reaction may be performed according to the condition for a reaction of protecting a hydroxy group which is generally performed. For example, by using diisopropyl azodicarboxylate or diethyl azodicarboxylate together with an alcohol and various phosphines, a compound (VI) in which P 2 is alkyl can be synthesized.
- a reaction temperature is 0 to 100° C., preferably 0° C. to room temperature.
- reaction solvent THF, toluene, dichloromethane and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 3 hours.
- the present step is a reaction of oxidizing a nitrogen atom of a compound (VI) to produce a compound (VII).
- the reaction may be performed according to the condition for an oxidation reaction using an oxidizing agent which is generally performed.
- a reaction temperature is 0 to 100° C., preferably under ice-cooling to room temperature.
- reaction solvent chloroform, methylene chloride, acetic acid and the like are exemplified.
- an oxidizing agent examples include metachloroperbenzoic acid, hydrogen peroxide and the like.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 5 hours.
- the present step is a reaction for hydroxylating a methyl group of a compound (VII).
- reaction temperature 0 to 150° C., preferably 120 to 3.40° C.
- this may be hydrolyzed (e.g.: treatment with a base (e.g.: alkali metal hydroxide)).
- a reaction time is a few minutes to a few tens hours, preferably 0.5 to 2 hours for acetoxylation, and 0.5 to 1 hour for hydrolysis.
- the present step is a reaction for oxidizing a hydroxy group of a compound (VIII) to synthesize a compound (IX).
- a reaction temperature is 0 to 150° C., preferably room temperature to 70° C.
- reaction solvent chloroform and the like are exemplified.
- dimethyl sulfoxide As an oxidizing agent, dimethyl sulfoxide and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 0.1 to 1 hour.
- the present step is a reaction for oxidizing a formyl group of a compound (IX) to synthesize a compound (X).
- a reaction temperature is 0 to 150° C., preferably under ice-cooling to room temperature.
- reaction solvent an alcohol and the like are exemplified.
- potassium hydroxide and iodine are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 0.5 to 3 hours.
- the present step is a reaction for deprotecting an OP 2 part of a compound (X) to synthesize a compound (XI).
- the reaction may be performed according to the condition for a reaction of deprotecting a hydroxy protecting group which is generally performed.
- a reaction temperature is 0 to 150° C., preferably under ice-cooling to room temperature.
- reaction solvent acetonitrile, methylene chloride, THF and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 3 hours.
- the present step is a reaction for deprotecting an OP 1 part of a compound (XI) to synthesize a compound (I-A).
- the reaction may be treated preferably with a Lewis acid (e.g.; aluminum chloride).
- a reaction temperature is 0 to 150° C., preferably 10 to 50° C.
- reaction solvent methylene chloride, THF and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 3 hours.
- the present step is a reaction for deprotecting an ester part (COOP 3 ) of a compound (X) to synthesize carboxylic acid (XII).
- COOP 3 ester part
- XII carboxylic acid
- hydrolysis with an alkali e.g.: NaOH
- an alkali e.g.: NaOH
- a reaction temperature is 0 to 150° C., preferably 10 to 50° C.
- reaction solvent methanol, water and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably a few minutes to 2 hours.
- Carboxylic acid (XII) can be converted into various derivatives (e.g.; amide).
- the present step is at reaction for reacting a compound (XII) with various amines to synthesize a compound (XIII).
- the reaction may be performed according to the condition for a reaction of amidating carboxylic acid which is generally performed and, for example, the reaction may be performed as in the first step.
- a reaction temperature is 0 to 150° C., preferably room temperature to 70° C.
- reaction solvent a non-protonic solvent can be broadly used, and tetrahydrofuran (THF), 1,4-dioxane, dimethylformamide (DMF), methylene chloride, chloroform and the like are preferable.
- a reaction time is a few minutes to a few tens hours, preferably a few minutes to 3 hours.
- An amide part of the resulting compound (XIII) may be further chemically modified (e.g.: N-alkylation).
- the present step is a reaction for deprotecting OP 1 and OP 2 parts of a compound (XIII) to synthesize a compound (I-B).
- the reaction may be performed according to the condition for a reaction of deprotecting a hydroxy protecting group which is generally performed.
- a reaction temperature is 0 to 200° C., preferably 150 to 180 degree.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 5 minutes.
- the present step is a reaction for deprotecting an ester part (COOP 3 ) of a compound (XI) to synthesize carboxylic acid (XIV).
- COOP 3 ester part
- XIV carboxylic acid
- hydrolysis with an alkali e.g.; lithium hydroxide
- an alkali e.g., lithium hydroxide
- a reaction temperature is 0 to 150° C., preferably 10 to 50° C.
- reaction solvent methanol, water and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably a few minutes to 3 hours.
- the present step is a reaction for deprotecting an OP 1 part of a compound (XIV) to synthesize a compound (I-C).
- the reaction may be treated preferably with a Lewis acid (e.g.: boron tribromide).
- a reaction temperature is 0 to 150° C., preferably under ice-cooling to room temperature.
- reaction solvent dichloromethane and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably a few minutes to 5 hours.
- the monocyclic carbamoylpyridone derivative obtained above is derived into a bicyclic compound by the following method.
- the present step is a reaction for reacting the compound (XI) or a compound (XI′) which is a tautomer thereof with an allyl compound to synthesize a compound (XV).
- a compound (XI′) can be synthesized, for example, according to the method of Example A-1.
- the reaction is performed preferably in the presence of a base (e.g.: cesium carbonate).
- a base e.g.: cesium carbonate
- a reaction temperature is 0 to 100° C., preferably 10 to 40° C.
- reaction solvent dimethylformamide and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 10 hours.
- the present step is a reaction for oxidizing a compound (XV) to synthesize a compound (XVI).
- a compound (XV) As an oxidizing agent, osmium tetraoxide and alkali metal osmium tetraoxide (e.g.; KaOsO 4 ) are exemplified.
- a reaction temperature is 0 to 100° C., preferably 10 to 40° C.
- reaction solvent 1,4-dioxane, tetrahydrofuran and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 5 hours.
- the present step is a reaction for reacting a compound (XVI) with amine (XVII) to perforin dehydration condensation to synthesize a compound (XVIII).
- a reaction temperature is 0 to 200° C., preferably 140 to 180° C.
- reaction solvent methylene chloride, acetonitrile and the like are exemplified.
- reaction timer s a few minutes to a few tens hours, preferably 0.5 to 1.5 hours.
- the present step is a reaction for deprotecting a compound (XVIII) preferably with an acid to synthesize a compound (XIX), and may be performed according to the condition for a conventional reaction of deprotecting a protected hydroxy group.
- a reaction temperature is 0 to 200° C.
- a reaction time is a few minutes to a few tens hours, preferably 15 minutes to 1 hour.
- the present step is a reaction for reducing a compound (XVIII) to synthesize a compound (XX).
- H 2 /Pd—C and the like are exemplified.
- a reaction temperature is 0 to 100° C., preferably 10 to 30° C.
- reaction solvent dimethylformamide, methanol, tetrahydrofuran and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 5 to 20 hours.
- the intermediate (XVIII) may be also synthesized by a method shown below.
- the present step is a reaction for reacting a compound (XIV) with a compound (XXI) to synthesize a compound (XXII).
- the present reaction may be performed according to the condition for a conventional amidation reaction.
- a reaction temperature is 0 to 100° C., preferably 0 to 50° C.
- reaction solvent dimethylformamide, methylene chloride, tetrahydrofuran and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 10 hours;
- the present step is a reaction for reacting a compound (XXII) with an acid to perform deprotection and intramolecular ring closure, to synthesize a compound (XXIII).
- the present reaction may be performed according to the condition for a conventional reaction of deprotecting acetal.
- a reaction temperature is 0 to 100° C., preferably room temperature to 80° C.
- reaction solvent dioxane, tetrahydrofuran and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 0.5 to 1 hour.
- hydrochloric acid As an acid, hydrochloric acid, and paratoluenesulfonic acid are exemplified.
- the present step is a reaction for dehydrating a compound (XXIII) to synthesize a compound (XXIV).
- the present reaction may be performed according to the condition for a conventional dehydration reaction.
- a reaction temperature is 0 to 100° C., preferably room temperature to 80° C.
- reaction solvent acetonitrile, methylene chloride and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 5 hours.
- the present step is a reaction for reacting a compound (XVI) with amine (XXIV) to perform dehydration condensation to synthesize a compound (XXV) according to the seventeenth step or a method of synthesizing a compound 17-1.
- a reaction catalyst an acid (e.g.: acetic acid) is added, and a microwave reaction apparatus is used.
- a reaction temperature is 0 to 200° C., preferably 140 to 180° C.
- reaction solvent methylene chloride, acetonitrile and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 0.5 to 1.5 hours.
- the present step is a reaction for deprotecting a compound (XXV) preferably with an acid to synthesize a compound (XXVI) according to the eighteenth step, and may be performed according to the condition for a conventional reaction of deprotecting a protected hydroxy group.
- a reaction temperature is 0 to 200° C.
- a reaction time is a few minutes to a few tens hours, preferably 15 minutes to 1 hour.
- the present step is a reaction for reacting a compound (XIV) with a compound (XXIV) to synthesize a compound (XXVII) according to the twentieth step.
- the present reaction may be performed according to the condition for a conventional amidation reaction.
- a reaction temperature is 0 to 100° C., preferably 0 to 50° C.
- reaction solvent dimethylformamide, methylene chloride, tetrahydrofuran and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 10 hours.
- the present step is a reaction for reacting a compound (XXVII) or a tautomer thereof with an allyl compound to synthesize a compound (XXVIII) according to the fifteenth step.
- a reaction is performed preferably in the presence of a base (e.g.: cesium carbonate).
- a base e.g.: cesium carbonate
- a reaction temperature is 0 to 100° C., preferably 10 to 40° C.
- reaction solvent dimethylformamide and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 10 hours.
- the present step is a reaction for oxidizing a compound (XXVIII) to synthesize a compound (XXIX) according to the sixteenth step.
- osmium tetraoxide and alkali metal osmium tetraoxide e.g.: K 2 OsO 4
- K 2 OsO 4 alkali metal osmium tetraoxide
- a reaction temperature is 0 to 100° C., preferably 10 to 40° C.
- a reaction time is a few minutes to a few tens hours, preferably 1 to 5 hours.
- the present step is a reaction for dehydration-condensing a compound (XXIX) to synthesize a compound (XXX) according to the seventeenth step or a method of synthesizing a compound 17-1.
- a reaction catalyst an acid (e.g.: acetic acid) is added, and a microwave reaction apparatus is used.
- a reaction temperature is 0 to 200° C., preferably 140 to 180° C.
- reaction solvent methylene chloride, acetonitrile and the like are exemplified.
- a reaction time is a few minutes to a few tens hours, preferably 0.5 to 1.5 hours.
- the present step is a reaction for deprotecting a compound (XXX) preferably with an acid to synthesize a compound (XXXI) according to the eighteenth step, and may be performed according to the condition for a conventional reaction of deprotecting a protected hydroxy group.
- a reaction temperature is 0 to 200° C.
- a reaction time is a few minutes to a few tens hours, preferably 15 minutes to 1 hour.
- a compound (I-3) in which Z is NR 19 can be synthesized according to the following reaction scheme, according to Process 4.
- a compound (XIV-16) is obtained by reacting a compound (XIV) with an amine reagent, according to the thirty-fifth step.
- a compound (XIV-17) is obtained by subjecting a compound (XIV-16) to a general acetal deprotecting reaction according to the forty-fourth step.
- a compound (XIV-18) is obtained (D ring formation) by deprotecting a P 1 part of a compound (XIV-14) according to the thirty-eighth step.
- the present invention further provides various intermediates (I-P) shown below and a process for preparing the same, as well as a process for preparing the above mentioned compound (I) comprising the deprotection of the intermediate.
- P 1 is a hydroxyl-protecting group; the other symbols are as defined above
- Preferred Compounds are shown below.
- R e is one or two halogen
- R z is C 1-8 alkyl, C 6-14 arylC 1-8 alkyl, C 6-14 aryl, or alkoxy
- P 1 is C 6-14 arylC 1-8 alkyl
- R e is one or two halogen
- R z is C 1-8 alkyl, C 6-14 arylC 1-8 alkyl, C 6-14 aryl, or alkoxy
- P 1 is C 6-14 arylC 1-8 alkyl
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is one or two halogen; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is one or two halogen;
- R z is C 1-8 alkyl;
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl;
- R e is one or two halogen;
- R z is C 1-8 alkyl;
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is one or two halogen
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is one or two halogen
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl; and P 1 is C 6-14 arylC 1-8 alkyl;
- R e is halogen
- P 1 is C 6-14 arylC 1-8 alkyl
- compound (I-20a), (I-20b), (I-21a), (I-21b), (I-22a), (I-22b), (I-23a), (I-23b), (I-24a), (I-24b), (I-25), (I-26), or (I-27), can be prepared by condensing a compound of the formula:
- R e is one or two halogen; and R 50 is C 1-8 alkyl;
- R z is C 1-8 alkyl, C 6-14 arylC 1-8 alkyl, C 6-14 aryl, or alkoxy;
- R z is C 1-8 alkyl, C 6-14 arylC 1-8 alkyl, C 6-14 aryl, or alkoxy;
- R z is C 1-8 alkyl
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl;
- R z is C 1-8 alkyl
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl;
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl;
- R z1 is hydrogen, C 3-6 cycloalkyl, heterocycle, or C 1-8 alkyl optionally substituted with hydroxy, C 3-6 cycloalkyl, alkoxy, heterocycle, heteroaryl, C 6-14 aryl, or amino, wherein said amino may be optionally substituted with —C(O)C 1-8 alkyl or C 1-8 alkyl;
- solvent examples include halocarbons such as dichloromethane, dichloroethane, and acetic acid.
- the reaction temperature is preferably, 0 to 200° C., more preferably, 50 to 170° C.
- the reaction time is usually several minutes to several hours.
- the present compound obtained above may be further chemically modified to synthesize another compound.
- a reactive functional group e.g.: OH, COOH, NH 2
- the group may be protected before the reaction and may be deprotected after the reaction, if desired.
- the present compound is useful, for example, as a drug such as an anti-virus drug.
- the present compound has the remarkable inhibitory action on integrase of a virus. Therefore, the present compound can be expected to have the preventive or therapeutic effect for various diseases derived from a virus which produces at least integrase, and is grown at infection in an animal cell, and is useful as an integrase inhibiting agent for retrovirus (e.g. HIV-1, HIV-2, HTLV-1, SIV, FIV etc.), and is useful as an anti-HIV drug etc.
- retrovirus e.g. HIV-1, HIV-2, HTLV-1, SIV, FIV etc.
- the present compound may be used in joint use therapy by combining an anti-HIV drug having the different action mechanism such as a reverse trascriptase inhibitor and/or a protease inhibiting agent.
- an integrase inhibitor is not marketed, and it is useful to use in joint use therapy by combining the present compound with a reverse transcriptase inhibitor and/or a protease inhibitor.
- the above use includes not only use as a medical mixture for anti-HIV, but also use as a joint use agent for increasing the anti-HIV activity of other anti-HIV drug such as cocktail therapy.
- the present compound can be used in order to prevent infection with a retrovirus vector from spreading into a tissue other than an objective tissue, upon use of a retrovirus vector based on HIV or MLV in the field of gene therapy.
- a retrovirus vector based on HIV or MLV in the field of gene therapy.
- the present compound is administered in advance, extra infection can be prevented in a body.
- the present compound can be administered orally or parenterally.
- the present compound can be also used as a conventional preparation, for example, as any dosage form of a solid agent such as tablets, powders, granules, capsules and the like; an aqueous agent; an oily suspension; or a liquid agent such as syrup and elixir.
- the present compound can be used as an aqueous or oily suspension injectable, or a nasal drop.
- conventional excipients, binders, lubricants, aqueous solvents, oily solvents, emulsifiers, suspending agents, preservatives, stabilizers and the like may be arbitrarily used.
- an anti-HIV-drug particularly, an oral agent is preferable.
- a preparation of the present invention is prepared by combining (e.g. mixing) a therapeutically effective amount of the present compound with a pharmaceutically acceptable carrier or diluent.
- a dose of the present invention is different depending on an administration method, an age, a weight and condition of a patient, and a kind of a disease and, usually, in the case of oral administration, about 0.05 mg to 3000 mg, preferably about 0.1 mg to 1000 mg may be administered per adult a day, if necessary, by dividing the dose. In addition, in the case of parenteral administration, about 0.01 mg to 1000 mg, preferably about 0.05 mg to 500 mg is administered per adult a day.
- the extract was washed with a 5% aqueous potassium carbonate solution, an aqueous saturated ammonium chloride solution, and an aqueous saturated sodium chloride solution, and dried with anhydrous sodium sulfate.
- the solvent was distilled off under reduced pressure to obtain a mixture (175 g) of 10 and 11. the resulting mixture was dissolved in acetic acid (1050 ml) and water (1050 ml), and zinc (31.1 g, 475 mmol) was added, followed by heating to reflux for 1 hour. After the reaction solution was cooled to room temperature, a 10% aqueous potassium carbonate solution was added, followed by extraction with ethyl acetate.
- the extract was washed with an aqueous saturated ammonium chloride solution, and an aqueous saturated sodium chloride solution, and dried with anhydrous sodium sulfate. After the solvent was distilled off under reduced pressure, this was washed with diethyl ether to obtain 5-benzyloxy-N-(4-fluoro-benzyl)-4-hydroxy-6-hydroxymethyl-nicotinic acid amide 10 (107 g, 59%) as a colorless crystal.
- the reaction solution was diluted with ethyl acetate, washed with an aqueous saturated sodium bicarbonate solution, a 10% aqueous citric acid solution, and an aqueous saturated sodium chloride solution, and dried with anhydrous sodium sulfate.
- the solvent was distilled off under reduced pressure, and the residue was washed with diethyl ether to obtain 3-benzyloxy-5-(4-fluoro-benzylcarbamoyl)-4-hydroxy-pyridine-2-carboxylic acid methyl ester 14 (141 mg, 69%) as a colorless crystal.
- the organic layer was washed with water, a 5% aqueous sodium hydrogen sulfite solution and an aqueous saturated sodium chloride solution, and dried with anhydrous sodium sulfate.
- the solvent was distilled off under reduced pressure, and the residue was washed with diethyl ether to obtain 3-benzyloxy-5-(4-fluoro-benzylcarbamoyl)-4-oxo-1-(2-oxo-ethyl)-1,4-dihydro-pyridine-2-carboxylic acid methyl ester 16 (5.39 g, 71%) as a colorless crystal.
- a compound 33 was synthesized using 1-aminomethylcyclopentanol hydroxyethylamine according to the method of synthesizing a compound 17-1.
- a compound 33-2 was synthesized using hydroxyethylamine according to the similar method.
- Example C-1 was synthesized using a compound 33, according to the method of synthesizing Example A-1.
- Example compounds F-2 to F-63 were synthesized.
- Example compound H-1 (71 mg) was obtained at a yield of 82% from a compound 53 (106 mg), according to the method of Example B-1 17).
- Example compound H-2 was synthesized according to the same manner as that of Example H-1.
- Example compound I-2 was synthesized.
- Example compound L-1 was synthesized.
- Example compounds Y-1 to Y-18 were synthesized.
- 3-Amino-2-methyl-propan-1-ol, and 4-Amino-butan-2-ol were prepared according to the method of Russell A. Barrow (J. Am. Chem. Soc. 1995, 117, 2479-2490).
- 3-Amino-butan-1-ol were prepared according to the method of P. Besse (Tetrahedron Asymmetry 10 (1999) 2213-2224).
- N-BOC-(2S)-2-(Hydroxymethyl)-1-pyrrolidine To a solution of N-BOC-L-proline (4.17 g, 19.4 mmol) in THF (40 mL) at 0° C. was added BH 3 -THF (21.4 mL, 1 M in THF, 21.4 mmol) dropwise. The bath was removed and the resultant solution stirred at room temperature for 2 h. Methanol was added to quench the mixture and the solvents were removed in vacuo. The residue was taken up in ethyl acetate and washed with sodium bicarbonate and brine. The aqueous layers were extracted twice with ethyl acetate.
- N-BOC-(25)-2-( ⁇ [(4-Methylphenyl)sulfonyl]oxy ⁇ methyl)-1-pyrrolidine To a cold (0° C.) solution of N-BOC-(25)-2-(hydroxymethyl)-1-pyrrolidine (350 mg, 1.74 mmol) in dichloromethane (20 mL) was added triethylamine (0.29 mL, 2.08 mmol), and toluenesulfonyl chloride (398 mg, 2.08 mmol). N,N-dimethylaminopyridine (70 mg) was added and the resultant solution was allowed to warm to rt as the bath warmed and stirred for 4 h. Water was added and the layers separated.
- N-BOC-(2S)-2-(2-Aminoethyl)-1-pyrrolidine A solution of N-BOC-(2S)-2-cyano-1-pyrrolidine (179 mg, 0.85 mmol) in ethanol saturated with anhydrous ammonia was treated with Raney-Ni (1 mL of 50% aq. Suspension) and 50 psi of H 2 overnight.
- This material was hydrogenated in a second step as described in example Z-2 to give (4aS,13aR)—N-[(4-fluorophenyl)methyl]-10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1H-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamide (21 mg, 42%) as a white solid.
- This material was hydrogenated in a second step as described in example Z-2 to give (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-5,7-dioxo-3-(phenylmethyl)-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide. (25 mg, 75%) as a white solid.
- This material was hydrogenated in a second step as described in example Z-2 to give (3aS,13aS)—N-[(4-Fluorophenyl)methyl]-8-hydroxy-7,9-dioxo-1,2,3,3a,4,5,7,9,13,13a-decahydropyrido[1′,2′:3,4]pyrazino[1,2-a]pyrrolo[1,2-c]pyrimidine-10-carboxamide. (63 mg, 88%) as a white solid.
- This material was hydrogenated in a second step as described in example Z-1 to give (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-[(1S)-1-methylpropyl]-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide (376 mg, 99%) as a coarse white solid.
- This material (360 mg, 0.81 mmol) was treated with sodium hydroxide (0.81 mL, 1.0 M, 0.81 mmol) in ethanol (15 mL) as described in example Z-1 to provide its corresponding sodium salt (384 mg, 99%) as a white solid.
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Abstract
Z═O; R20, R21, R22, R23, R24 and R25 independently are hydrogen, C1-C8 alkyl, (C6-C14)aryl-(C1-C8)alkyl, C6-C14 aryl, or alkoxy; the stereochemistry of an asymmetric carbon represented by * shows R- or S-configuration, or a mixture thereof; RX is hydrogen; R14 is hydrogen or optionally substituted lower alkyl; R3 is hydrogen; R1 is hydrogen or lower alkyl; R is halogen; and m is 1, 2 or 3; or a pharmaceutically acceptable salt thereof.
Description
- [Patent Document 1] WO03/0166275
- [Patent Document 2] WO2004/024693
- [Patent Document 3] WO03/035076
- [Patent Document 4] WO03/035076
- [Patent Document 5] WO2004/004657
- [Patent Document 6] JP Patent Application 2003-32772
- [Patent Document 7] JP Patent Publication 1990-108668
- [Patent Document 8] JP Patent Publication 1990-108683
- [Patent Document 9] JP Patent Publication 1990-96506
- [Patent Document 10] WO2005/016927
(7) A compound of the formula:
(9) A compound according to the above (7), pharmaceutically acceptable salt, or solvate thereof, wherein a broken line represents the absence of a bond.
(10) A compound according to the above (7), pharmaceutically acceptable salt, or solvate thereof, wherein RX is hydrogen; R14 is hydrogen or optionally substituted lower alkyl.
(11) A compound according to the above (7), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is an optionally substituted and optionally condensed 5- to 7-membered heterocycle containing 1 to 2 hetero atom(s).
(12) A compound of the formula:
-
- (wherein, R20 to R40 are each independently a group selected from Substituent group S2, or any two groups of R20 to R40, which bonds to the same carbon atom, taken together with the carbon atom, may form an optionally substituted carbocycle or optionally substituted heterocycle, or each combination of (R20 and R22), (R23 and R24), (R25 and R26), (R27 and R29), (R30 and R31), (R32 and R34), (R35 and R36), (R37 and R38), and (R39 and R40) taken together with the neighboring atom, may form an optionally substituted carbocycle or optionally substituted heterocycle.
(19) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-1); one of R20 to R25 is optionally substituted lower alkyl and the others are hydrogens.
(20) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-1); one of (R20 and R22), (R23 and R24), and (R25 and R26), taken together with the neighboring atom, may form an optionally substituted 5- to 7-membered carbocycle or optionally substituted 5- to 7-membered heterocycle.
(21) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-1); Z═NR26, and R25 and R26 taken together with the neighboring atom may form an optionally substituted 5- to 7-membered heterocycle.
(22) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-2); one of R27 to R30 is optionally substituted lower alkyl and the others are hydrogens.
(23) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-2); one of (R27 and R29) and (R30 and R31), taken together with the neighboring atom, may form an optionally substituted 5- to 7-membered carbocycle or optionally substituted 5- to 7-membered heterocycle.
(24) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-2); Z═NR31, and R30 and R31 taken together with the neighboring atom may form an optionally substituted 5- to 7-membered heterocycle.
(25) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-3); one of R32 to R39 is optionally substituted lower alkyl and the others are hydrogens.
(26) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-3); one of (R32 and R34), (R35 and R36), (R37 and R38), and (R39 and R40), taken together with the neighboring atom, may form an optionally substituted 5- to 7-membered carbocycle or optionally substituted 5- to 7-membered heterocycle.
(27) A compound according to the above (17), pharmaceutically acceptable salt, or solvate thereof, wherein A ring is a ring represented by (A-3); Z═NR40, and R39 and R40 taken together with the neighboring atom may form an optionally substituted 5- to 7-membered heterocycle.
(28) A compound according to the above (12), pharmaceutically acceptable salt, or solvate thereof, wherein RX is hydrogen; R14 is hydrogen or optionally substituted lower alkyl; R3 is hydrogen; m is 1 to 3 and at least one of R5 is halogen; A ring is a ring described in the above (17).
(29) A compound according to the above (12), pharmaceutically acceptable salt, or solvate thereof, wherein RX is hydrogen; R14 is hydrogen; R3 is hydrogen; m is 0, or 1 to 3 and at least one of Rs is halogen; A ring is a ring described in the above (17); R20 to R40 are each independently hydrogen or substituted lower alkyl, or any two groups of R20 to R40, which bonds to the same carbon atom, taken together with the carbon atom, may form an optionally substituted 3- to 7-membered carbocyle or optionally substituted 3- to 7-membered heterocycle, or each combination of (R20 and R22), (R23 and R24), (R25 and R26), (R27 and R29), (R30 and R31), (R32 and R34), (R35 and R36), (R37 and R38), and (R39 and R40), taken together with the neighboring carbon atom, may form an optionally substituted 5- to 7-membered carbocyle or optionally substituted 5- to 7-membered heterocycle.
(30) A compound of the formula:
- (3R,11aS)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (4aR,13aS)—N-[(2,4-Difluorophenyl)methyl]-10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1H-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamide;
- (3aS,13aS)—N-[(2,4-Difluorophenyl)methyl]-8-hydroxy-7,9-dioxo-1,2,3,3a,4,5,7,9,13,13a-decahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrrolo[1,2-c]pyrimidine-10-carboxamide;
- (4aS,13aR)—N-[(2,4-Difluorophenyl)methyl]-10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1H-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamide;
- (4aS,13aR)—N-[(4-Fluorophenyl)methyl]-10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1H-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-5,7-dioxo-3-(phenylmethyl)-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3aS,13aS)—N-[(4-Fluorophenyl)methyl]-8-hydroxy-7,9-dioxo-1,2,3,3a,4,5,7,9,13,13a-decahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrrolo[1,2-c]pyrimidine-10-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-[(1S)-1-methylpropyl]-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(4-Fluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-3-(1,1-dimethylethyl)-6-hydroxy-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)-3-(1,1-Dimethylethyl)-N-[(4-fluorophenyl)methyl]-6-hydroxy-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-5,7-dioxo-3-phenyl-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-(hydroxymethyl)-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (2S,3R)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2-phenyl-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3R,11aS)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-5,7-dioxo-3-(phenylmethyl)-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3R,11aS)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-(2-methylpropyl)-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (5aR,14aR)—N-[(2,4-Difluorophenyl)methyl]-11-hydroxy-10,12-dioxo-1,2,3,4,5a,6,10,12,14,14a-decahydropyrido[1,2-d]pyrido[1′,2′:3,4]imidazo[1,2-d]pyrazine-9-carboxamide;
- (2S,3S)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-[(methyloxy)methyl]-5,7-dioxo-2-phenyl-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)-3-(Cyclohexylmethyl)-N-[(2,4-difluorophenyl)methyl]-6-hydroxy-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-(1-methylethyl)-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (5aR,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-11,13-dioxo-5a,6a,7,11,13,14a-hexahydro-5H-indeno[1′,2′:4,5][1,3]oxazolo[3,2-a]pyrido[1,2-a]pyrazine-10-carboxamide;
- (2S,3R,11aS)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-5,7-dioxo-2,3-diphenyl-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (2S,3R,11aR)—N-[(2,4-difluorophenyl)methyl]-6-hydroxy-5,7-dioxo-2,3-diphenyl-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3R,11aS)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-(1-methylethyl)-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-[2-(methylthio)ethyl]-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-[2-(methylsulfonyl)ethyl]-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-(1H-indol-3-ylmethyl)-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (4R,12aR)—N-[(4-fluorophenyl)methyl]-7-hydroxy-4-methyl-1-(2-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4R,12aR)—N-[(4-Fluorophenyl)methyl]-7-hydroxy-4-methyl-1-(1-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-1-(2-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)-1-(Cyclopropylmethyl)-N-[(2,4-difluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-1-(2-furanylmethyl)-7-hydroxy-4-methyl-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1-(1,3-thiazol-2-ylmethyl)-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4aR,6aR,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-11,13-dioxo-1,3,4,4a,5,6a,7,11,13,14a-decahydro-2H-pyrido[1′,2′:4,5]pyrazino[1,2-a][3,1]benzoxazine-10-carboxamide;
- (4aR,6aR,14aS)—N-[(4-Fluorophenyl)methyl]-12-hydroxy-11,13-dioxo-1,3,4,4a,5,6a,7,11,13,14a-decahydro-2H-pyrido[1′,2′:4,5]pyrazino[1,2-a][3,1]benzoxazine-10-carboxamide;
- (3S,4aR,6aR,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-11,13-dioxo-3-phenyl-1,3,4,4a,5,6a,7,11,13,14a-decahydro-2H-pyrido[1′,2′:4,5]pyrazino[1,2-a][3,1]benzoxazine-10-carboxamide;
- (4aS,6aS,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-6-(2-methylpropyl)-11,13-dioxo-1,2,3,4,4a,5,6,6a,7,11,13,14a-dodecahydropyrido[1′,2′:4,5]pyrazino[1,2-a]quinazoline-10-carboxamide;
- (6aR,7aS,11aS)—N-[(2,4-Difluorophenyl)methyl]-1-hydroxy-2,13-dioxo-2,6a,7,7a,8,9,10,11,11a,13-decahydro-6H-pyrido[1′,2′:4,5]pyrazino[1,2-a]benzimidazole-3-carboxamide;
- (6aS,7aS,11aS)—N-[(2,4-Difluorophenyl)methyl]-1-hydroxy-2,13-dioxo-2,6a,7,7a,8,9,10,11,11a,13-decahydro-6H-pyrido[1′,2′:4,5]pyrazino[1,2-a]benzimidazole-3-carboxamide;
- (5aS,14aS)—N-[(2,4-Difluorophenyl)methyl]-11-hydroxy-10,12-dioxo-1,2,3,4,5a,6,10,12,14,14a-decahydropyrido[1,2-a]pyrido[1′,2′:3,4]imidazo[1,2-d]pyrazine-9-carboxamide;
- (4aR,14aR)—N-[(2,4-Difluorophenyl)methyl]-9-hydroxy-8,10-dioxo-2,3,4,4a,5,6,8,10,14,14a-decahydro-1H-pyrido[1,2-c]pyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-11-carboxamide;
- (4R,12aR)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-1-(3-methylbutyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-1-(1-methylethyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-1-(3-methylbutyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1-(3-pyridinylmethyl)-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)-1-Cyclopropyl-N-[(2,4-difluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-1-[2-(methyloxy)ethyl]-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (3aS,5aS,13aS)—N-[(2,4-Difluorophenyl)methyl]-11-hydroxy-5-(2-methylpropyl)-10,12-dioxo-2,3,3a,4,5,5a,6,10,12,13a-decahydro-1H-cyclopenta[e]pyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (3R,11aS)—N-[(2,4-Difluorophenyl)methyl]-3-ethyl-6-hydroxy-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (4aS,6aS,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-6-[2-(4-morpholinyl)ethyl]-11,13-dioxo-1,2,3,4,4a,5,6,6a,7,11,13,14a-dodecahydropyrido[1′,2′:4,5]pyrazino[1,2-a]quinazoline-10-carboxamide;
- (3aR,5aR,13aS)—N-[(2,4-Difluorophenyl)methyl]-11-hydroxy-10,12-dioxo-1,2,3,3a,4,5a,6,10,12,13a-decahydrocyclopenta[d]pyrido[1′,2′:4,5]pyrazino[2,1-b][1,3]oxazine-9-carboxamide;
- (4aS,6aS,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-6-methyl-11,13-dioxo-1,2,3,4,4a,5,6,6a,7,11,13,14a-dodecahydropyrido[1′,2′:4,5]pyrazino[1,2-a]quinazoline-10-carboxamide;
- (4aS,6aS,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-6-[2-(methyloxy)ethyl]-11,13-dioxo-1,2,3,4,4a,5,6,6a7,11,13,14a-dodecahydropyrido[1′,2′:4,5]pyrazino[1,2-a]quinazoline-10-carboxamide;
- (4aS,6aS,14aS)-6-[2-(Acetylamino)ethyl]-N-[(2,4-difluorophenyl)methyl]-12-hydroxy-11,13-dioxo-1,2,3,4,4a,5,6,6a,7,11,13,14a-dodecahydropyrido[1′,2′:4,5]pyrazino[1,2-a]quinazoline-10-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-3-ethyl-6-hydroxy-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)-3-Butyl-N-[2,4-difluorophenyl)methyl]-6-hydroxy-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-[(4-hydroxyphenyl)methyl]-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide
- (4S,12aS)-1-Cyclobutyl-N-[(2,4-difluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1-(tetrahydro-2H-thiopyran-4-yl)-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-1,4-bis(2-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4aS,6aS,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-6-(2-hydroxyethyl)-11,13-dioxo-1,2,3,4,4a,5,6,6a,7,11,13,14a-dodecahydropyrido[1′,2′:4,5]pyrazino[1,2-a]quinazoline-10-carboxamide;
- (4aS,6aS,14aS)-6-Cyclopropyl-N-[(2,4-difluorophenyl)methyl]-12-hydroxy-11,13-dioxo-1,2,3,4,4a,5,6,6a,7,11,13,14a-dodecahydropyrido[1′,2′:4,5]pyrazino[1,2-a]quinazoline-10-carboxamide;
- (4aS,6aS,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-11,13-dioxo-6-[2-(1-pyrrolidinyl)ethyl]-1,2,3,4,4a,5,6,6a,7,11,13,14a-dodecahydropyrido[1′,2′:4,5]pyrazino[1,2-a]quinazoline-10-carboxamide;
- (4aS,14aS)—N-[(2,4-Difluorophenyl)methyl]-9-hydroxy-8,10-dioxo-2,3,4,4a,5,6,8,10,14,14a-decahydro-1H-pyrido[1,2-c]pyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-11-carboxamide;
- (4S,12aS)—N-[(4-Fluorophenyl)methyl]-7-hydroxy-4-methyl-1-[2-(methyloxy)ethyl]-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)-1-Cyclobutyl-N-[(4-fluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:3,4]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(4-Fluorophenyl)methyl]-7-hydroxy-4-methyl-1-(2-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(4-Fluorophenyl)methyl]-7-hydroxy-1,4-dimethyl-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(4-Fluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1-(tetrahydro-2H-thiopyran-4-yl)-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-1,4-dimethyl-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(4-Fluorophenyl)methyl]-7-hydroxy-4-methyl-1-(1-methylethyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)—N-[(4-Fluorophenyl)methyl]-7-hydroxy-1,4-bis(2-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
enantiomers thereof; diastereomers thereof; mixtures of enantiomers thereof; mixtures of diastereomers thereof; mixtures of enantiomers and diastereomers thereof; and pharmaceutically acceptable salts thereof.
(32) A compound selected from the group consisting of: - (4aS,13aR)—N-[(2,4-Difluorophenyl)methyl]-10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1H-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamide;
- (4aS,13aR)—N-[(4-Fluorophenyl)methyl]-10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1H-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-[(1S)-1-methylpropyl]-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(2,4-Difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (3S,11aR)—N-[(4-Fluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide;
- (4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-1-(2-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4S,12aS)-1-(Cyclopropylmethyl)-N-[(2,4-difluorophenyl)methyl]-7-hydroxy-4-methyl-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide;
- (4aR,6aR,14aS)—N-[(2,4-Difluorophenyl)methyl]-12-hydroxy-11,13-dioxo-1,3,4,4a,5,6a,7,11,13,14a-decahydro-2H-pyrido[1′,2′:4,5]pyrazino[1,2-a][3,1]benzoxazine-10-carboxamide;
- (4aR,6aR,14aS)—N-[(4-Fluorophenyl)methyl]-12-hydroxy-11,13-dioxo-1,3,4,4a,5,6a,7,11,13,14a-decahydro-2H-pyrido[1′,2′:4,5]pyrazino[1,2-a][3,1]benzoxazine-10-carboxamide
- (4S,9aR)-5-Hydroxy-4-methyl-6,10-dioxo-3,4,6,9,9a,10-hexahydro-2H-1-oxa-4a,8a-diaza-anthracene-7-carboxylic acid 2,4-difluorobenzylamide;
- (4R,9aS)-5-Hydroxy-4-methyl-6,10-dioxo-3,4,6,9,9a,10-hexahydro-2H-1-oxa-4a,8a-diaza-anthracene-7-carboxylic acid 2,4-difluorobenzylamide;
- (2R,9aS)-5-Hydroxy-2-methyl-6,10-dioxo-3,4,6,9,9a,10-hexahydro-2H-1-oxa-4a,8a-diaza-anthracene-7-carboxylic acid 4 fluoro-benzylamide;
enantiomers thereof; diastereomers thereof, mixtures of enantiomers thereof; mixtures of diastereomers thereof; mixtures of enantiomers and diastereomers thereof; and pharmaceutically acceptable salts thereof.
(33) A compound according to the above (31) or (32) wherein the pharmaceutically acceptable salt is a sodium salt.
(34) A pharmaceutical composition comprising a compound according to any one of the above (1) to (33), or a pharmaceutically acceptable salt, or solvate thereof.
(35) A pharmaceutical composition according to the above (34), which is an anti-HIV agent.
(36) A process for the preparation of a compound of formula (I-20a)
wherein Re is one or two halogen; Rz is C1-8alkyl, C6-14arylC1-8alkyl, C6-14aryl, or alkoxy; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
wherein Rz is C1-8alkyl, C6-14arylC1-8alkyl, C6-14aryl, or alkoxy;
to form a compound of formula (I-20a).
(37) A process for the preparation of a compound of formula (I-20b)
wherein Re is one or two halogen; Rz is C1-8alkyl, C6-14arylC1-8alkyl, C6-14aryl, or alkoxy; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
wherein Rz is C1-8alkyl, C6-14arylC1-8alkyl, C6-14aryl, or alkoxy;
to form a compound of formula (I-20b).
(38) A process for the preparation of a compound of formula (I-21a)
wherein Re is one or two halogen; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
to form a compound of formula (I-21a).
(39) A process for the preparation of a compound of formula (I-21b)
wherein Re is one or two halogen; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
to form a compound of formula (I-21b).
(40) A process for the preparation of a compound of formula (I-22a)
wherein Re is one or two halogen; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
to form a compound of formula (I-22a).
(41) A process for the preparation of a compound of formula (I-22b)
wherein Re is one or two halogen; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
to form a compound of formula (I-22b).
(42) A process for the preparation of a compound of formula (I-23a)
wherein Re is one or two halogen; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
to form a compound of formula (I-23a).
(43) A process for the preparation of a compound of formula (I-23b)
wherein Re is one or two halogen; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
to form a compound of formula (I-23b).
(44) A process for the preparation of a compound of formula (I-24a)
wherein Re is one or two halogen; Rz is C1-8alkyl; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; and R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
wherein Rz is C1-8alkyl; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
to form a compound of the formula (I-24a).
(45) A process for the preparation of a compound of formula (I-24b)
wherein Re is one or two halogen; Rz is C1-8alkyl; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a compound of the formula
wherein Rz is C1-8alkyl; and Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
to form a compound of the formula (I-24b).
(46) A process for the preparation of a racemic compound of formula (I-25)
wherein Re is one or two halogen; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; and R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a racemic compound of the formula
wherein Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
to form a racemic compound of the formula (I-25).
(47) A process for the preparation of a racemic compound of formula (I-26)
wherein Re is one or two halogen; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen; R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a racemic compound of the formula
wherein Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
to form a racemic compound of formula (I-26).
(48) A process for the preparation of a racemic compound of formula (I-27)
wherein Re is halogen; and P1 is C6-14arylC1-8alkyl;
comprising condensing a compound of the formula
wherein Re is one or two halogen: R50 is C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
with a racemic compound of the formula
to form a racemic compound of formula (I-27).
(49). A compound of formula (I-20a) described in above (36), formula (I-20b) described in above (37), formula (I-21a) described in above (38), formula (I-21b) described in above (39), formula (I-22a) described in above (40), formula (I-22b) described in above (41), formula (I-23a) described in above (42), formula (I-23b) described in above (43), formula (I-24a) described in above (44), formula (I-24b) described in above (45), formula (I-25) described in above (46), formula (I-26) described in above (47), or formula (I-27) described in above (48), or a pharmaceutically acceptable salt thereof.
(50) A compound of formula (I-20a) described in above (36), formula (I-20b) described in above (37), formula (I-21a) described in above (38), formula (I-21b) described in above (39), formula (I-22a) described in above (40), formula (I-22b) described in above (41), formula (I-23a) described in above (42), formula (I-23b) described in above (43), formula (I-24a) described in above (44), formula (I-24b) described in above (45), formula (I-25) described in above (46), formula (I-26) described in above (47), or formula (I-27) described in above (48), or a pharmaceutically acceptable salt thereof, wherein each P1 is hydrogen.
(wherein, RA and RB each is independently ORC or NRDRE (wherein RC, RD and RE are each independently hydrogen, optionally substituted lower alkyl, optionally substituted cycloalkyl, optionally substituted aryl, optionally substituted heterocyclic group, or RD and RE taken together with the neighboring N atom may form an optionally substituted heterocycle (preferably 5- to 6-membered ring)) or RA and RB taken together with the neighboring P atom may form an optionally substituted heterocycle (preferably 5- to 6-membered ring)).
(wherein, R20 to R40 are each independently a group selected from Substituent group S2, or any two groups of R20 to R40, which bonds to the same carbon atom, taken together with the carbon atom, may form a spiro ring, i.e., an optionally substituted carbocycle or optionally substituted heterocycle, or each combination of (R20 and R22), (R23 and R24), (R25 and R26), (R27 and R29), (R30 and R31), (R32 and R34, (R35 and R36), (R37 and R38), and (R39 and R40), taken together with the neighboring atom, may form an optionally substituted carbocycle or optionally substituted heterocycle.
(wherein each symbol is as defined above; Z is O or NR19; R15 to R19 are each independently hydrogen or a group selected from the above Substituent group S2, or each combination of (R15 and R16), (R17 and R18), (R10 and R18), and (R18 and R19) taken together with the neighboring atom(s), may form an optionally substituted carbocycle (preferably 5- to 6-membered ring) or an optionally substituted heterocyle (preferably 5- to 6-membered ring); or each combination of (R15 and R16) and (R17 and R18) taken together may form oxo)
(3) R is each independently, —F, —CF3, —OMe, —OCF3, —CH2OMe, —CH2OH, —CH2N(Me)2, —CONHMe, —CON(Me)2, —CH2PO(OEt)2, —PO(OEt)2, —NHSO2Me, or —NMeSO2Me; R1 is hydrogen; R3 is hydrogen; m is 1 or 2; R14 is hydrogen, hydroxyl or —CH3N(Me)2; Z is O or NR19 (R19 is hydrogen or CH(Me)2, —(CH2)2OMe, —(CH2)2PO(OEt)2).
(4) R15 and R16 are hydrogens; R17 and R18 are hydrogens or taken together with the neighboring atom form a 3- to 7-membered carbocycle; and/or Z is O or NH. This case preferably also satisfies the above (2) or (3).
(wherein L1 is a leaving group (e.g.; halogen); P1 and P2 are a hydroxy protecting group; P3 is a carboxy protecting group (e.g.: lower alkyl); Ra and Rb are hydrogen or a substituent on an amino group)
(wherein R1, X, R2, P1, P3 and R4 are as define above, and L2 is a leaving group such as halogen etc.)
(Fifteenth Step)
(P1 is a hydroxyl-protecting group; the other symbols are as defined above)
Preferred Compounds are shown below. Each P1 is a hydroxyl-protecting group, such as C6-14arylC1-8alkyl (e.g., benzyl (=Bn)).
Preferably, wherein Re is one or two halogen; Rz is C1-8alkyl, C6-14arylC1-8alkyl, C6-14aryl, or alkoxy; and P1 is C6-14arylC1-8alkyl;
Preferably, wherein Re is one or two halogen; Rz is C1-8alkyl; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
Preferably, wherein Re is one or two halogen; Rz is C1-8alkyl; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
Preferably, wherein Re is one or two halogen; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
Preferably, wherein Re is one or two halogen; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl; and P1 is C6-14arylC1-8alkyl;
wherein Rz is C1-8alkyl; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
wherein Rz is C1-8alkyl; Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
wherein Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
wherein Rz1 is hydrogen, C3-6cycloalkyl, heterocycle, or C1-8alkyl optionally substituted with hydroxy, C3-6cycloalkyl, alkoxy, heterocycle, heteroaryl, C6-14aryl, or amino, wherein said amino may be optionally substituted with —C(O)C1-8alkyl or C1-8alkyl;
1) Maltol 1 (189 g, 1.5 mol) was dissolved in dimethylformamide (1890 ml), and benzyl bromide (184 ml, 1.5 mol) was added. After the solution was stirred at 80° C. for 15 minutes, potassium carbonate (228 g, 1.65 mol) was added, and the mixture was stirred for 1 hour. After the reaction solution was cooled to room temperature, an inorganic salt was filtered, and the filtrate was distilled off under reduced pressure. To the again precipitated inorganic salt was added tetrahydrofuran (1000 ml), this was filtered, and the filtrate was distilled off under reduced pressure to obtain the crude product (329 g, >100%) of 3-benzyloxy-2-methyl-pyran-4-one 2 as a brown oil.
1) A compound 33 was synthesized using 1-aminomethylcyclopentanol hydroxyethylamine according to the method of synthesizing a compound 17-1.
1) According to the method of synthesizing a compound 17-1, the crude purified product (503 mg) of a compound 48 was obtained at a yield of 82% from a compound 16 (600 mg).
2) To a solution of a compound 48 (100 mg, 0.22 mmol), isobutylaldehyde (39 μl, 0.432 mmol) and acetic acid (25 μl, 0.432 mmol) in dichloromethane (4 ml) was added sodium triacetoxyborohydride (92 mg, 0.432 mmol) under ice-cooling, and the mixture was stirred at room temperature for 2 hours. Further, isobutylaldehyde (20 μl) and sodium triacetoxyborohydride (46 mg) were added, and the mixture was stirred for 30 minutes. To the reaction solution was added water, this was extracted with chloroform, and the organic layer was washed with an aqueous saturated sodium bicarbonate solution. After drying, the solvent was distilled off under reduced pressure, and this was purified by silica gel column chromatography. A compound 49 (87 mg) was obtained as a colorless crystal at a yield of 78%.
1) To a solution of a compound 48 (120 mg, 0.26 mmol) in methylene chloride (1.2 ml) were added triethylamine (43 μl, 0.31 mmol), acetic anhydride (29 μl, 0.31 mmol), and 4-dimethylaminopyridine (cat.) at room temperature, and the mixture was stirred for 30 minutes. Further, triethylamine (18 μl, 0.13 mmol) and acetic anhydride (12 μl, 0.13 mmol) were added, and the mixture was stirred for 4 hours. 2N hydrochloric acid was added, this was extracted with chloroform, and the organic layer was washed with water, dried with sodium sulfate, and concentrated under reduced pressure. Diisopropyl ether was added to crystallize the material, which was filtered to obtain 53 (112 mg) as a pale orange crystal at a yield of 86%.
2) An Example compound H-1 (71 mg) was obtained at a yield of 82% from a compound 53 (106 mg), according to the method of Example B-1 17).
1) To a solution of a compound 48 (140 mg, 0.30 mmol) in pyridine (1.4 ml) were added methanesulfonyl chloride (28 μl, 0.36 mmol), and 4-dimethylaminopyridine (cat.) at room temperature, and the mixture was stirred for 3 hours. After 2N hydrochloric acid was added, this was extracted with ethyl acetate, and the organic layer was washed with water, dried with sodium sulfate, and concentrated under reduced pressure. Diisopropylether was added to crystallize the material, which was filtered to obtain 54 (127 mg) as a pale orange crystal at a yield of 78%.
2) According to the method of Example B-1 17), an Example compound I-1 (21 mg) was obtained at a yield of 21% from a compound 54 (123 mg).
1) According to the method of synthesizing a compound 66, a compound 62 (278 mg, 57%) was obtained from a compound 13 (357 mg).
2) According to the method of synthesizing a compound 57, a compound 63 (202 mg, 79%) was obtained from a compound 62 (278 mg).
3) To a solution of a compound 63 (200 mg, 0.403 mmol) in chloroform (2 ml) were added dimethyl sulfoxide (286 μl, 4.03 mmol), and triethylamine (337 μl, 2.42 mmol), the mixture was stirred for 10 minutes under ice-cooling, a sulfur trioxide-pyridine complex (321 mg, 2.02 mmol) was added, and the mixture was stirred at room temperature for 2 hours. To the reaction solution was added water (3 ml), and chloroform was distilled off under reduced pressure, followed by extraction with ethyl acetate. The organic layer was washed with water, dried with anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The crystalline residue was washed with ethyl acetate to obtain a compound 64 (60 mg) at a yield of 30%.
4) Using a compound 64, and according to the method of synthesizing Example A-1, an Example compound L-1 was synthesized.
1) According to the method of synthesizing a compound 21, a compound 65 (207 mg) was obtained at a yield of 24% from a compound 13 (250 mg).
2) According to the method of synthesizing a compound 64, a compound 66 (313 mg, 67%) was obtained from a compound 65 (470 mg).
3) After trifluoroacetic acid (10 ml) was added to a compound 66 (100 mg, 0.020 mmol), the mixture was stirred at 75° C. for 4 hours. The solvent was distilled off under reduced pressure, and this was diluted with chloroform, and added to ice water. This was washed with an aqueous saturated sodium bicarbonate solution, a 10% aqueous citric acid solution, and water, and dried with anhydrous sodium sulfate, and the solvent was distilled off under reduced pressure. The residue was subjected to silica gel column chromatography, and fractions eluted with chloroform-methanol were concentrated under reduced pressure, and recrystallized with ethyl acetate-diisopropyl ether to obtain an Example compound M-1 (23 mg, 16%).
1) Selenium dioxide (666 mg, 6.0 mmol) was added to the solution of compound 2 (216 mg, 1.0 mmol) in bromobenzene (2 ml). Then the mixture was heated up to 160° C., and stirred for 16 h. After celite filtration the solvent was evaporate. The precipitate was purified by silica gel column chromatography, and fractions eluting with n-hexan/EtOAc were concentrated under reduced pressure to obtain compound 100 (164 mg, 71%) as a yellow oil.
a) N-BOC-(2S)-2-(Hydroxymethyl)-1-pyrrolidine. To a solution of N-BOC-L-proline (4.17 g, 19.4 mmol) in THF (40 mL) at 0° C. was added BH3-THF (21.4 mL, 1 M in THF, 21.4 mmol) dropwise. The bath was removed and the resultant solution stirred at room temperature for 2 h. Methanol was added to quench the mixture and the solvents were removed in vacuo. The residue was taken up in ethyl acetate and washed with sodium bicarbonate and brine. The aqueous layers were extracted twice with ethyl acetate. The combined organics were dried over Na2SO4, filtered and concentrated to give N-BOC-(2S)-2-(hydroxymethyl)-1-pyrrolidine (3.82 g, 98%) as a clear oil. This material was used without further purification. 1H NMR (CDCl3) δ 3.94 (m, 1H), 3.62 (dd, J=11.2, 3.2 Hz, 1H), 3.56 (dd, J=10.8, 7.2 Hz, 1H), 3.44 (m, 1H), 3.29 (m, 1H), 2.62 (br, 1H), 1.98 (m, 1H), 1.85-1.72 (m, 2H), 1.58 (m, 1H).
b) N-BOC-(25)-2-({[(4-Methylphenyl)sulfonyl]oxy}methyl)-1-pyrrolidine. To a cold (0° C.) solution of N-BOC-(25)-2-(hydroxymethyl)-1-pyrrolidine (350 mg, 1.74 mmol) in dichloromethane (20 mL) was added triethylamine (0.29 mL, 2.08 mmol), and toluenesulfonyl chloride (398 mg, 2.08 mmol). N,N-dimethylaminopyridine (70 mg) was added and the resultant solution was allowed to warm to rt as the bath warmed and stirred for 4 h. Water was added and the layers separated. The aqueous layer was washed with sodium bicarbonate and then with brine. The combined organics were dried over Na2SO4, filtered and concentrated followed by flash chromatography purification to give N-BOC-(25)-2-({[(4-methylphenyl)sulfonyl]oxy}methyl)-1-pyrrolidine (460 mg, 75%) as a clear oil. 1H NMR exists as rotamers (CDCl3) δ 7.77 (d, 2H), 7.33 (m, 2H), 4.08 (m, 1H), 3.97-3.88 (m, 1H), 3.35-3.25 (m, 2H), 2.43 (s, 3H), 1.95-1.79 (m, 4H), 1.40 and 1.35 (s, 9H rotomeric BOC t-butyl).
c) N-BOC-(2S)-2-Cyano-1-pyrrolidine. A mixture of —N-BOC-(2S)-2-({[(4-methylphenyl)sulfonyl]oxy}methyl)-1-pyrrolidine (460 mg, 1.29 mmol) and KCN (256 mg, 3.88 mmol) were heated at 90° C. in DMSO (10 mL) for 6.5 h. The mixture was cooled to room temperature and EtOAc and water were added. The organics were washed with water twice and then with brine. The aqueous layers were extracted with EtOAc and the combined organics dried over Na2SO4, filtered and concentrated followed by flash chromatography purification to give N-BOC-(2S)-2-cyano-1-pyrrolidine (179 mg, 66%) as an oil. 1H NMR exists as rotomers (CDCl3) δ 3.99 (m, 1H), 3.43-3.37 (m, 2H), 2.83-2.51 (m, 2H), 2.17-1.83 (m, 4H), 1.46 and 1.44 (s, 9H rotomeric BOC t-butyl).
d) N-BOC-(2S)-2-(2-Aminoethyl)-1-pyrrolidine. A solution of N-BOC-(2S)-2-cyano-1-pyrrolidine (179 mg, 0.85 mmol) in ethanol saturated with anhydrous ammonia was treated with Raney-Ni (1 mL of 50% aq. Suspension) and 50 psi of H2 overnight. The mixture was filtered through Celite and the filtrate was concentrated in vacuo. The residue was purified by flash chromatography (10% CH3OH/CH2Cl2 with 1% NH4OH gradient elution) through a short plug of silica gel to give —N-BOC-(2S)-2-(2-aminoethyl)-1-pyrrolidine (90 mg, 50%) as a clear oil. 1H NMR exists as rotomers (CDCl3) δ 3.88-3.77 (m, 1H), 3.33-3.24 (m, 2H), 2.66 (m, 2H), 1.89-1.54 (m, 6H), 1.40 (s, 9H).
e) {2-[(2S)-2-Pyrrolidinyl]ethyl}amine. A solution of —N-BOC-(2S)-2-(2-aminoethyl)-1-pyrrolidine (90 mg, 0.42 mmol) in THF (6 mL) was treated with 4 N HCl (aq) (2 mL) and stirred at room temperature for 3 h. The mixture was concentrated in vacuo to give the title compound as its HCl salt. A portion of this material (40 mg) was dissolved in methanol and treated with solid supported carbonate resin (MP-Carbonate, Argonaut Technologies) to freebase the amines. After 30 minutes, the solution was filtered through a fritted tube and the solvents removed carefully in vacuo to give {2-[(2S)-2-pyrrolidinyl]ethyl}amine (30 mg) as its free base. 1H NMR (CDCl3) δ 3.06 (m, 1H), 2.94 (m, 1H), 2.83 (m, 1H), 2.79-2.69 (m, 2H), 1.90-1.56 (m, 6H),
f)
a) [(2R)-2-Pyrrolidinylmethyl]amine. To a solution of N-BOC-(2R)-2-(aminomethyl)-1-pyrrolidine (1.37 g, 6.85 mmol) in THF (20 mL) was added 4 N HCl (aq) (8 mL). The resultant solution was stirred at room temperature overnight. The solvents were removed in vacuo and the residue was treated with MP-carbonate resin in methanol and dichloromethane. After 1 h, the resin was removed via filtration through a fritted tube and the volatiles were removed carefully in vacuo to produce the free based amine (760 mg crude >100%) as a oil. This material was used without further purification. 1H NMR (CDCl3) δ 3.13 (m, 1H), 2.92 (m, 1H), 2.82-2.62 (m, 5H), 1.88-1.30 (m, 4H).
b)
a) 1,1-Dimethylethyl (2R)-2-(aminocarbonyl)-1-piperidinecarboxylate. To a cold (0° C.) solution of (2R)-1-{[(1,1-dimethylethyl)oxy]carbonyl}-2-piperidinecarboxylic acid (1.0 g, 4.36 mmol) in THF (20 mL) was added triethylamine (0.60 mL, 4.36 mmol) followed by slow addition of methyl chloroformate (0.34 mL, 4.36 mmol). After a few minutes a suspension had formed. To this mixture was added concentrated NH4OH (1.5 mL) and the solution was allowed to warm to rt as the bath warmed and stirred for a total of 4 h. The mixture was concentrated in vacuo and the residue was taken up in EtOAc. The organic layer was washed with citric acid, sodium bicarbonate and then brine, dried over Na2SO4. Filtration and concentration gave 1,1-dimethylethyl (2R)-2-(aminocarbonyl)-1-piperidinecarboxylate (1.0 g, 99%). 1H NMR (CDCl3) δ 6.03 (br, 1H), 5.45 (br, 1H), 4.77 (br, 1H), 4.06 (br, 1H), 2.82 (m, 1H), 2.29 (m, 1H), 1.67-1.43 (m, 13H).
b) 1,1-Dimethylethyl (2R)-2-cyano-1-piperidinecarboxylate. To a cold (0° C.) solution of 1,1-dimethylethyl (2R)-2-(aminocarbonyl)-1-piperidinecarboxylate (269 mg, 1.17 mmol) in THF (10 mL) was added triethylamine (0.33 mL, 2.34 mmol) and then trifluoroacetic anhydride (0.17 mL, 1.17 mmol). The mixture was stirred at 0° C. for 1 h and concentrated in vacuo. The residue was taken up in EtOAc and washed successively with sodium bicarbonate, 0.5 N HCl and brine. The organics were dried over Na2SO4, filtered and concentrated to give 1,1-dimethylethyl (2R)-2-cyano-1-piperidinecarboxylate (255 mg, 99%) as a crystalline solid upon standing. 1H NMR (CDCl3) δ 5.23 (br, 1H), 4.05 (br, 1H), 2.93 (br, 1H), 1.93-1.39 (m, 6H), 1.46 (s, 9H).
c) 1,1-Dimethylethyl (2R)-2-(aminomethyl)-1-piperidinecarboxylate. An ammonia saturated ethanol solution of 1,1-dimethylethyl (2R)-2-cyano-1-piperidinecarboxylate (255 mg, 1.19 mmol) was reduced with Raney-Ni in a similar manner to that described in example Z-3 to give after filtration through a short plug of silica, 1,1-dimethylethyl (2R)-2-(aminomethyl)-1-piperidinecarboxylate (236 mg, 91%), as an oil. 1H NMR (CDCl3/CD3OD) δ 4.15 (br, 1H), 3.97 (m, 1 h), 2.96 (m, 1H), 2.75-2.69 (m, 2H), 2.23-2.08 (m, 3H), 1.59-1.55 (m, 3H), 1.43 (s, 9H).
d) [(2R)-2-Piperidinylmethyl]amine bis HCl salt. A solution of 1,1-dimethylethyl (2R)-2-(aminomethyl)-1-piperidinecarboxylate (236 mg, 1.08 mmol) in THF (10 mL) was treated with 4 N HCl (3 mL) as described in example Z-3 to give the bis HCl salt of [(2R)-2-Piperidinylmethyl]amine. 1H NMR (DMSO-d6) δ 9.67 (br, 1H), 9.48 (br, 1H), 8.48 (br, 2H), 3.70 (br, 2H), 3.20 (m, 1H), 3.04 (m, 1H), 2.86 (m, 1H), 1.89-1.41 (m, 6H),
e)
a) (2R)-2-({[(1,1-Dimethylethyl)oxy]carbonyl}amino)propyl methanesulfonate. To a stirred solution of 1,1-dimethylethyl[(1R)-2-hydroxy-1-methylethyl]carbamate (5.00 g, 28.5 mmol) and triethylamine (5.92 mL, 42.9 mmol) in CH2Cl2 (30 mL) cooled to 0° C. and under a nitrogen atmosphere was added dropwise a solution of methanesulfonyl chloride (2.43 mL, 31.5 mmol) in CH2Cl2 (25 mL). Stirring was continued for 20 minutes at 0° C., after which time the reaction was judged complete by TLC analysis (1:1 hexanes/EtOAc). The solution was poured into water and the layers were separated. The organic phase was washed with 0.1 N HCl and then with 5% NaHCO3, dried over Na2SO4, filtered and concentrated to give (2R)-2-({[(1,1-dimethylethyl)oxy]carbonyl}amino)propyl methanesulfonate (7.08 g, 98%) as a white solid. 1H NMR (400 MHz, CDCl3) δ 1.23 (d, J=6.8 Hz, 3H), 1.44 (s, 9H), 3.03 (s, 3H), 3.97 (m, 1H), 4.15 (dd, J=4.2, 9.8 Hz, 1H), 4.21 (m, 1H), 4.61 (br s, 1H).
b) 1,1-Dimethylethyl[(1R)-2-cyano-1-methylethyl]carbamate. To a stirred solution of (2R)-2-({[(1,1-dimethylethyl)oxy]carbonyl}amino)propyl methanesulfonate (7.08 g, 27.9 mmol) in DMSO (50 mL) was added NaCN (3.78 g, 84.0 mmol). The solution was stirred at 70° C. for 2 hours, over which time the formation of a precipitate was observed. After cooling at room temperature, water was added and the mixture was extracted with Et2O. The ethereal layers were washed with a brine solution, dried over Na2SO4, filtered and concentrated to give 1,1-dimethylethyl [(1R)-2-cyano-1-methylethyl]carbamate (3.81 g, 73%) as a pale yellow solid. 1H NMR (400 MHz, CDCl3) δ 1.30 (d, J=6.8 Hz, 3H), 1.42 (s, 9H), 2.51 (dd, J=3.8, 16.6 Hz, 1H), 2.73 (m, 1H), 3.93 (m, 1H), 4.63 (br s, 1H).
c) 1,1-Dimethylethyl[(1R)-3-amino-1-methylpropyl]carbamate. A solution of 1,1-dimethylethyl[(1R)-2-cyano-1-methylethyl]carbamate (1.30 g, 7.1 mmol) in ethanol saturated with anhydrous ammonia was treated with Raney-Ni (1.5 mL of 50% aq. Suspension) and 55 psi of H2 overnight. The mixture was filtered through Celite and the filtrate was concentrated in vacuo. The residue was purified by flash chromatography (80:19:1 CH2Cl2/MeOH/NH4OH (37%) gradient elution) through a short plug of silica gel to give 1,1-dimethylethyl [(1R)-3-amino-1-methylpropyl]carbamate (1.37 g, 100%) as a clear oil that solidified. 1H NMR (400 MHz, CDCl3) δ 1.14 (d, J=6.8 Hz, 3H), 1.43-1.62 (m, 13H), 2.76 (m, 2H), 3.77 (m, 1H), 4.57 (m, 1H).
d) 1,1-Dimethylethyl {(1R)-1-methyl-3-[(2-methylpropyl)amino]propyl}carbamate. 1,1-dimethylethyl[(1R)-3-amino-1 methylpropyl]carbamate (0.320 g, 1.70 mmol), isobutyraldehyde (150 μL, 1.62 mmol), and sodium triacetoxyborohydride (0.512 g, 2.42 mmol) were stirred in anhydrous dichloroethane (10 mL) at ambient temperature overnight. The reaction was quenched by the addition of saturated NaHCO3 and then extracted with dichloromethane. The combined extracts were washed with water, dried over Na2SO4, filtered and concentrated. The residue was purified by flash chromatography (80:19:1 CH2Cl2/MeOH/NH4OH (37%) gradient elution) through a short plug of silica gel to afford 1,1-dimethylethyl {(1R)-1-methyl-3-[(2-methylpropyl)amino]propyl}carbamate (0.158 g, 40%) as a clear oil. 1H NMR (400 MHz, CDCl3) δ 0.90 (d, J=6.4 Hz, 6H), 1.13 (d, J=6.4 Hz, 3H), 1.42-1.51 (m, 11H), 1.67-1.75 (m, 2H), 2.33-2.42 (m, 2H), 2.58-2.72 (m, 2H), 3.72 (m, 1H), 5.20 (m, 1H).
e) [(3R)-3-Aminobutyl](2-methylpropyl)amine. An ice cold solution of 1,1-dimethylethyl {(1R)-1-methyl-3-[(2-methylpropyl)amino]propyl}carbamate (0.158 g, 0.65 mmol) in THF (8 mL) was treated with 4 N HCl (aq) (2 mL) and then stirred at room temperature for 2 h. The mixture was concentrated in vacuo to give [(3R)-3-aminobutyl](2-methylpropyl)amine dihydrochloride. The HCl salt, was then dissolved in dichloromethane and a minimal amount of methanol and treated with solid supported carbonate resin (MP-Carbonate, Argonaut Technologies). After 30 minutes, the solution was filtered through a fritted tube and the solvents removed carefully in vacuo to give [(3R)-3-aminobutyl](2-methylpropyl)amine (65 mg). 1H NMR (400 MHz, CDCl3) δ 0.88 (d, J=6.0 Hz, 6H), 1.06 (d, J=5.6 Hz, 3H), 1.23-1.53 (m, 5H), 1.71-1.74 (m, 1H), 2.39 (m, 2H), 2.65 (m, 2H), 2.97 (m, 1H),
f)
a) [(3R)-3-Aminobutyl](1-methylethyl)amine. The free diamine was prepared in a similar manner as described in example Z-29. 1H NMR (400 MHz, CDCl3) δ 1.04 (d, J=6.4 Hz, 6H), 1.06 (d, J=6.4 Hz, 3H), 1.41-1.58 (m, 5H), 2.62-2.66 (m, 2H), 2.74-2.80 (m, 1H), 2.92-3.00 (m, 1H).
b)
a) 1,1-Dimethylethyl[(1S)-2-cyano-1-methylethyl]carbamate. The nitrile was prepared in two steps using a modified procedure as described in example Z-29. To a stirred solution of (2S)-2-({[(1,1-dimethylethyl)oxy]carbonyl}amino)propyl methanesulfonate (8.40 g, 33.2 mmol) in DMSO (50 mL) and KCN (6.51 g, 100.0 mmol) cooled to 0° C. was added 18-crown-6 (9.05 g, 34.3 mmol). The solution was allowed to warm to room temperature and then heated to 70° C. for 1 hour. After cooling at room temperature, water was added and the mixture was extracted with Et2O. The ethereal layers were washed with a brine solution, dried over Na2SO4, filtered and concentrated to give 1,1-dimethylethyl [(1S)-2-cyano-1-methylethyl]carbamate (5.37 g, 88%) as a pale yellow solid. 1H NMR (400 MHz, CDCl3) δ 1.32 (d, J=6.8 Hz, 3H), 1.44 (s, 9H), 2.52 (dd, J=4.0, 16.4 Hz, 1H), 2.74 (m, 1H), 3.95 (m, 1H), 4.65 (br s, 1H).
b) [(3S)-3-Aminobutyl](2-methylpropyl)amine dihydrochloride was prepared in a similar manner as described in example Z-29. 1H NMR (400 MHz, CDCl3/CD3OD) δ 0.99 (m, 6H), 1.34 (m, 3H), 2.13-2.27 (m, 3H), 2.76 (m, 2H), 3.07 (m, 2H), 3.47 (m, 1H), 8.22 (m, 1H), 8:83 (m, <1H).
c)
(4S,12aS)—N-[(2,4-Difluorophenyl)methyl]-7-hydroxy-4-methyl-1-(2-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide. The title compound was made in two steps using a similar process to that described in example Z-2. 16a (80 mg, 0.17 mmol) and free based [(3S)-3-aminobutyl](2-methylpropyl)amine (107 mg, 0.74 mmol) were reacted in dichloromethane (2 mL) with acetic acid to give (4S,12aS)—N-[(2,4-difluorophenyl)methyl]-4-methyl-1-(2-methylpropyl)-6,8-dioxo-7-[(phenylmethyl)oxy]-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide (76 mg, 76%) as a film. This material was hydrogenated in a second step as described in example Z-2 to give (4S,12aS)—N-[(2,4-difluorophenyl)methyl]-7-hydroxy-4-methyl-1-(2-methylpropyl)-6,8-dioxo-1,2,3,4,6,8,12,12a-octahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrimidine-9-carboxamide (39 mg, 80%) as an off-white solid. 1H NMR (400 MHz, CDCl3) δ 0.76 (d, J=6.4 Hz, 3H), 0.84 (d, J=6.4 Hz, 3H), 1.32 (d, J=7.2 Hz, 3H), 1.45-1.50 (m, 1H), 1.60-1.69 (m, 1H), 2.03-2.12 (m, 2H), 2.21-2.27 (m, 1H), 2.73-2.79 (m, 1H), 2.87-2.93 (m, 1H), 4.16-4.25 (m, 2H), 4.45 (s, 1H), 4.57-4.68 (m, 2H), 4.96-5.01 (m, 1H), 6.75-6.82 (m, 2H), 7.32-7.38 (m, 1H), 8.26 (s, 1H), 10.45 (s, 1H), 12.56 (s, 1H); ES+ MS: 475 (M+1).
a) 1,1-Dimethylethyl {(1S)-3-[(cyclopropylmethyl)amino]-1-methylpropyl}carbamate. The protected diamine was prepared using a modified procedure as described in example Z-29. 1,1-dimethylethyl[(1S)-3-amino-1-methylpropyl]carbamate (0.293 g, 1.56 mmol), cyclopropane carboxaldehyde (96 μL, 1.30 mmol), and sodium triacetoxyborohydride (0.439 g, 2.07 mmol were stirred in a 1:1 mixture of anhydrous dichloroethane and tetrahydrofuran (10 mL) at ambient temperature overnight. The reaction was quenched by the addition of saturated NaHCO3 and then extracted with EtOAc. The combined extracts were washed with saturated NaHCO3, then a solution of brine, dried over Na2SO4, filtered and concentrated. The residue was purified by flash chromatography (80:1.9:1 CH2Cl2/MeOH/NH4OH (37%) gradient elution) through a short plug of silica gel to afford 1,1-dimethylethyl {(1S)-3-[(cyclopropylmethyl)amino]-1-methylpropyl}carbamate (76 mg, 26%) as a clear oil. 1H NMR (400 MHz, CDCl3) δ 0.09-0.13 (m, 2H), 0.44-0.49 (m, 2H), 0.92-0.95 (m, 1H), 1.14 (d, J=6.4 Hz, 3H), 1.43-1.70 (m, 12H), 2.38-2.50 (m, 2H), 2.62-2.73 (m, 2H), 3.74 (m, 1H), 4.88 (m, 1H).
b) [(3S)-3-Aminobutyl](cyclopropylmethyl)amine dihydrochloride was prepared in a similar manner as described in example Z-29. 1H NMR (400 MHz, CDCl3/CD3OD) δ 0.40 (m, 2H), 0.64 (m, 2H), 1.15 (m, 1H), 1.34 (m, 3H), 2.12-2.25 (m, 2H), 2.82 (m, 2H), 3.08 (m, 2H), 3.47 (m, 1H), 8.25 (br, <1H), 9.04 (br, <1H),
c)
a) [(3S)-3-Aminobutyl](2-furanylmethyl)amine dihydrochloride was prepared in a similar manner as described in example Z-32. 1H NMR (400 MHz, CDCl3/CD3OD) δ 1.27 (d, J=6.4 Hz, 3H), 1.96-2.05 (m, 1H), 2.14-2.19 (m, 1H), 3.00-3.04 (m, 2H), 3.38-3.39 (m, 1H), 4.11-4.18 (m, 2H), 6.34 (m, 1H), 6.59 (m, 1H), 7.40 (m, 1H), 8.18 (br, <1H), 9.41 (br, <1H).
b)
a) [(3S)-3-Aminobutyl](1,3-thiazol-2-ylmethyl)amine dihydrochloride was prepared in a similar manner as described in example Z-32. 1H NMR (400 MHz, CDCl3/CD3-OD) δ 1.28 (d, J=6.4 Hz, 3H), 2.05 (m, 1H), 2.17 (m, 1H), 3.20 (m, 2H), 3.39 (m, 1H), 4.51-4.58 (m, 2H), 7.52 (d, 1H), 7.82 (d, 1H).
b)
a) racemic-1,1-Dimethylethyl[(1S,2R)-2-(hydroxymethyl)cyclohexyl]carbamate. racemic-[(1R,2S,5S)-2-Amino-5-phenylcyclohexyl]methanol hydrochloride (800 mg, 4.82 mmol) was dissolved in MeOH (40 mL) and bis(1,1-dimethylethyl)dicarbonate (1.16 g, 5.30 mmol) and triethylamine (4 mL, 28.92 mmol) were added and the mixture was stirred 18 hours at ambient temperature. The solvents were removed under reduced pressure, ethyl acetate and aqueous saturated sodium bicarbonate were added and the product was extracted with ethyl acetate. The combined organics were dried over sodium sulfate and the solvents were removed under reduced pressure. Purification by silica gel chromatography (9:1 hexanes:ethyl acetate to ethyl acetate gradient elution) gave 1,1-dimethylethyl racemic-[(1S,2R)-2-(hydroxymethyl)cyclohexyl]carbamate (934 mg, 85%) as a white solid. 1H NMR (CDCl3) δ 4.87 (m, 1H), 4.03-3.95 (m, 2H), 3.26 (m, 1H), 3.15 (m, 1H), 1.73-1.48 (m, 5H), 1.38 (s, 9H), 1.27-1.15 (m, 3H), 0.887 (m, 1H).
b) racemic-1,1-Dimethylethyl[(1S,2R)-2-Formylcyclohexyl]carbamate. To a solution of dimethylsulfoxide (0.2 mL, 2.88 mmol) in dichloromethane (3 mL) at −78° C. was added oxalyl chloride (0.72 mL, 1.44 mmol) dropwise. The mixture was stirred 10 minutes and racemic-1,1-dimethylethyl [(1S,2R)-2-(hydroxymethyl)cyclohexyl]carbamate (220 mg, 0.961 mmol) in dichlormethane was added dropwise and stirred 10 minutes. Triethylamine (0.53 mL, 3.84 mmol) was added slowly and the reaction was stirred at −78° C. for one hour and allowed to warm to ambient temperature. Water was added and product was extracted with dichloromethane. The combined organics were washed with brine and dried over sodium sulfate. Removal of solvents under reduced pressure afforded racemic-1,1-dimethylethyl[(1S,2R)-2-formylcyclohexyl]carbamate (223 mg, quantitative) as a yellow oil. 1H NMR (CDCl3) δ 9.61 (s, 1H), 5.19 (m, 1H), 3.88 (m, 1H), 2.61 (m, 1H), 1.85 (m, 1H), 1.63-1.49 (m, 4H), 1.37-1.16 (m, 12H).
c) racemic-1,1-dimethylethyl ((1S,2S)-2-{[(2-Methylpropyl)amino]methyl}cyclohexyl)carbamate. racemic-1,1-Dimethylethyl [(1S,2R)-2-formylcyclohexyl]carbamate (223 mg, 0.982 mmol) was dissolved in dichloroethane and 2-methylpropyl)amine (0.15 mL, 1.47 mmol) and sodium triacetoxyborohydride (290 mg, 1.37 mmol) were added and the reaction was stirred at ambient temperature for 18 hours. Aqueous sodium bicarbonate was added and the product was extracted with dichloromethane. The combined extracts were dried over sodium sulfate and the solvents were removed under reduced pressure. Purification by silica gel chromatography (dichloromethane to 1% ammonium hydroxide 19% methanol 80% dichloromethane gradient elution) afforded racemic-1,1-dimethylethyl ((1S,2S)-2-{[(2-methylpropyl)amino]methyl}cyclohexyl)carbamate (112 mg, 40%) as a clear colorless oil. 1H NMR (CDCl3) δ 6.06 (br s, 1H), 3.76 (br s, 1H), 2.63 (m, 1H), 2.43-2.37 (m, 2H), 2.25 (m, 1H), 1.81 (m, 1H), 1.71-1.59 (m, 3H), 1.44-1.32 (m, 14H), 1.27-1.19 (m, 2H), 0.866 (m, 6H).
d) racemic-(1S,2S)-2-{[(2-Methylpropyl)amino]methyl}cyclohexanamine hydrochloride.
c) (For example Z-40). (6aS,7aS,11aS)—N-[(2,4-Difluorophenyl)methyl]-1-hydroxy-2,13-dioxo-2,6a,7,7a,8,9,10,11,11a,13-decahydro-6H-pyrido[1′,2′:4,5]pyrazino[1,2-a]benzimidazole-3-carboxamide. In a manner similar to that described in example Z-37, from the major diastereomer (30 mg, 0.0561 mmol) prepared in step a and 10 w.t. % Pd/C (catalytic amount), (6aS,7aS,11aS)—N-[(2,4-Difluorophenyl)methyl]-1-hydroxy-2,13-dioxo-2,6a,7,7a,8,9,10,11,11a,13-decahydro-6H-pyrido[1′,2′:4,5]pyrazino[1,2-a]benzimidazole-3-carboxamide was prepared as a white solid (15 mg, 60%) after purification by HPLC. 1H NMR (methanol-d4/CDCl3) δ 10.41 (m, 1H), 8.25 (s, 1H), 7.30 (m, 1H), 6.77 (m, 2H), 4.77 (m, 1H), 4.57 (m, 2H), 4.45 (m, 1H), 3.91 (m, 1H), 3.12 (m, 1H), 2.67 (m, 1H), 2.12 (m, 1H), 1.87-1.84 (m, 2H), 1.47-1.33 (m, 4H); ES+ MS: 445 (M+1).
a) Phenylmethyl (2R)-2-(hydroxymethyl)-1-piperidinecarboxylate. In a manner similar to that described in example Z-3a, from (2R)-1-{[(phenylmethyl)oxy]carbonyl}-2-piperidinecarboxylic acid (4.93 g, 18.75 mmol) was prepared phenylmethyl (2R)-2-(hydroxymethyl)-1-piperidinecarboxylate (2.24 g, 48%) as an oil that solidified upon standing to a white solid. 1H NMR (CDCl3) δ 7.36-7.26 (m, 5H), 5.18-5.10 (m, 2H), 4.37 (m, 1H), 4.03 (m, 1H), 3.84 (, m, 1H), 3.63 (m, 1H), 2.96 (br s, 1H), 1.71-1.42 (m, 6H).
b) Phenylmethyl (2R)-2-(cyanomethyl)-1-piperidinecarboxylate. In a manner similar to that described in example Z-3b, from phenylmethyl (2R)-2-(hydroxymethyl)-1-piperidinecarboxylate (1.09 g, 4.38 mmol) was prepared phenylmethyl (2R)-2-({[(4-methylphenyl)sulfonyl]oxy}methyl)-1-piperidinecarboxylate (1.05 g, 59% impure with uncharacterized byproduct) as a clear colorless oil after purification using silica gel chromatography (10-100% ethyl acetate-hexanes). It is necessary to use this material in the next step as soon as possible or yields deteriorate dramatically. In a manner similar to that described in example Z-3c, from phenylmethyl (2R)-2-({[(4-methylphenyl)sulfonyl]oxy}methyl)-1-piperidinecarboxylate (1.05 g, 2.61 mmol) and sodium cyanide (383 mg, 7.82 mmol) was prepared phenylmethyl (2R)-2-(cyanomethyl)-1-piperidinecarboxylate (171 mg, 25%) as a yellow oil. 1H NMR (CDCl3) δ 7.35-7.29 (m, 5H), 5.13 (s, 2H), 4.65 (m, 1H), 4.10 (m, 1H), 2.96 (m, 1H), 2.60 (m, 2H), 1.82-1.67 (m, 4H), 1.54-1.39 (m, 2H).
d) Phenylmethyl (2R)-2-(2-aminoethyl)-1-piperidinecarboxylate. In a manner similar to that described in example Z-3d, from phenylmethyl (2R)-2-(cyanomethyl)-1-piperidinecarboxylate (171 mg, 0.663 mmol) was prepared phenylmethyl (2R)-2-(2-aminoethyl)-1-piperidinecarboxylate (119 mg, 68%) as a clear colorless residue. 1H NMR (CDCl3) δ 7.32-7.25 (m, 5H), 5.08 (m, 2H), 4.39 (br s, 1H), 4.01 (br s, 1H), 2.78 (m, 1H), 2.60-2.56 (m, 2H), 1.95-1.86 (m, 3H), 1.63-1.35 (m, 6H).
e) {2-[(2R)-2-Piperidinyl]ethyl}amine. Phenylmethyl (2R)-2-(2-aminoethyl)-1-piperidinecarboxylate (119 mg, 0.454 mmol) was dissolved in methanol and 10 w.t. % Pd/C (120 mg) was added. Hydrogen was bubbled through the solution for 15 minutes and the reaction was stirred under 1 atm hydrogen for 18 hours until determined complete by TLC (1% ammonium hydroxide 19% methanol 80% dichloromethane). The suspension was filtered through Celite eluting with methanol and the filtrate was carefully concentrated under reduce pressure to yield a clear colorless liquid (58 mg, quantitative). 1H NMR (CDCl3) δ 2.99 (m, 1H), 2.71-2.66 (m, 2H), 2.57-2.48 (m, 2H), 1.72 (m, 1H), 1.61-1.52 (m, 2H), 1.48-1.42 (m, 2H), 1.35-1.25 (m, 2H), 1.05 (m, 1H),
f)
a) [(3R)-3-Aminobutyl](3-methylbutyl)amine dihydrochloride was prepared in a similar manner as described in example Z-32. 1H NMR (400 MHz, CDCl3/CD3OD) δ 0.87 (d, J=5.2 Hz, 6H), 1.32 (m, 3H), 1.61 (m, 3H), 2.10-2.20 (m, 2H), 2.90-3.04 (m, 4H), 3.45 (m, 1H), 8.23 (br, <1H), 8.96 (br, <1H).
b)
a) [(3S)-3-Aminobutyl](1-methylethyl)amine dihydrochloride was prepared in a similar manner as described in example Z-29. 1H NMR (400 MHz, CDCl3/CD3OD) δ 1.20-1.25 (m, 9H), 1.93-2.02 (m, 2H), 2.92 (m, 2H), 3.20-3.29 (m, 2H), 8.04 (br, <1H), 8.64 (br, <1H),
b)
a) [(3S)-3-Aminobutyl](3-methylbutyl)amine dihydrochloride was prepared in a similar manner as described in example Z-32. 1H NMR (400 MHz, CDCl3/CD3OD) δ 0.86 (d, J=5.6 Hz, 6H), 1.27 (d, J=6.0 Hz, 3H), 1.58 (m, 3H), 2.03-2.14 (m, 2H), 2.87-2.99 (m, 4H), 3.38 (m, 1H), 8.15 (br, <1H), 8.87 (br, <1H),
b)
a) 1,1-Dimethylethyl {(1S)-1-methyl-3-[(3-pyridinylmethyl)amino]propyl}carbamate. The protected diamine was prepared using a modified procedure as described in example Z-32. A solution of 1,1-dimethylethyl [(1S)-3-amino-1-methylpropyl]carbamate (0.296 g, 1.6 mmol) and 3-pyridinecarboxaldehyde (120 μL, 1.3 mmol) in a 1:1 mixture of anhydrous dichloroethane and tetrahydrofuran (10 mL) was treated with acetic acid (374 μL, 6.6 mmol) and stirred for 30 minutes. Sodium triacetoxyborohydride (0.444 g, 2.1 mmol) was added and the solution was stirred for 2 hours. The resultant was subjected to a workup and purification procedure as described in example Z-32 to give 1,1-dimethylethyl {(1S)-1-methyl-3-[(3-pyridinylmethyl)amino]propyl}carbamate (0.245 g, 66%) as a clear oil. 1H NMR (400 MHz, CDCl3) δ 1.12 (d, J=6.4 Hz, 3H), 1.42 (s, 9H), 1.46-1.54 (m, 1H), 1.68 (m, 1H), 2.61-2.75 (m, 2H), 3.73-3.80 (m, 3H), 4.86 (m, 1H), 7.22-7.24 (m, 1H), 7.68 (d, J=8.0 Hz, 1H), 8.48 (m, 1H), 8.53 (m, 1H).
b) [(3S)-3-Aminobutyl](3-pyridinylmethyl)amine dihydrochloride was prepared in a similar manner as described in example Z-29.
c)
a) 1,1-Dimethylethyl[(1S)-1-methyl-3-oxopropyl]carbamate. To a stirred solution of 1,1-dimethylethyl[(1S)-2-cyano-1-methylethyl]carbamate (0.656 g, 3.56 mmol) in anhydrous ether cooled to −40° C. was added dropwise a 1.0 M solution of diisobutylaluminum hydride in hexanes (14.2 mL, 14.2 mmol) over 20 minutes. Stirring was continued at this temperature for an additional 20 minutes. The yellow solution was quenched with Rochelle's salt and the resultant stirred at room temperature for 1 hour. The solids were filtered off through celite and rinsed with EtOAc. The organics were washed with brine, concentrated, and flash chromatographed (10-100% EtOAc/hexanes) to give 1,1-dimethylethyl [(1S)-1-methyl-3-oxopropyl]carbamate (0.193 g, 30%) as a clear oil. 1H NMR (400 MHz, CDCl3) δ 1.22 (d, J=6.8 Hz, 3H), 1.41 (s, 9H), 2.53-2.65 (m, 2H), 4.08-4.13 (m, 1H), 4.63 (m, 1H), 9.74-9.75 (m, 1H).
b) 1,1-Dimethylethyl[(1S)-3-(cyclopropylamino)-1-methylpropyl]carbamate. The protected diamine was prepared using a modified procedure as described in example Z-32. A solution of 1,1-dimethylethyl[(1S)-1-methyl-3-oxopropyl]carbamate (0.178 g, 0.95 mmol) and cyclopropylamine (197 μL, 2.85 mmol) in anhydrous dichloroethane (10 mL) was treated with acetic acid (272 μL, 4.8 mmol) and stirred for 30 minutes. Sodium triacetoxyborohydride (0.444 g, 2.1 mmol) was added and the solution was stirred for 20 hours. The resultant was subjected to a workup and purification procedure as described in example Z-32 to give 1,1-dimethylethyl [(1S)-3-(cyclopropylamino)-1-methylpropyl]carbamate (0.136 g, 63%) as a clear oil. 1H NMR (400 MHz, CDCl3) δ 0.32-0.42 (m, 4H), 1.12 (d, J=6.8 Hz, 3H), 1.39-1.51 (m, 10H), 1.58-1.92 (m, 2H), 2.05-2.10 (m, 1H), 2.67-2.80 (m, 2H), 3.71 (m, 1H), 4.78 (m, 1H).
c) [(3S)-3-Aminobutyl]cyclopropylamine dihydrochloride was prepared in a similar manner as described in example Z-29. 1H NMR (400 MHz, CDCl3/CD3OD) δ 0.70-0.75 (m, 2H), 0.90-0.94 (m, 2H), 1.18 (d, J=6.8 Hz, 3H), 1.84-1.94 (m, 1H), 1.97-2.05 (m, 1H), 2.49-2.54 (m, 1H), 2.99-3.04 (m, 2H), 3.23-3.28 (m, 1H),
d)
a) [(3S)-3-Aminobutyl][2-(methyloxy)ethyl]amine dihydrochloride. The protected diamine, 1,1-dimethylethyl ((1S)-1-methyl-3-{[2-(methyloxy)ethyl]amino}propyl)carbamate was prepared in a similar manner as described in example Z-47. Subsequently, [(3S)-3-aminobutyl][2-(methyloxy)ethyl]amine dihydrochloride was prepared in a similar manner as described in example Z-29. 1H NMR (400 MHz, CDCl3/CD3OD) δ 1.21 (d, J=5.6 Hz, 3H), 1.93 (m, 1H), 2.04 (m, 1H), 2.98-3.05 (m, 4H), 3.22 (m, 2H), 3.26-3.31 (m, 4H), 8.06 (br, <1H), 8.81 (br, <1H),
b)
a) racemic-1,1-Dimethylethyl[(1S,2R)-2-formylcyclohexyl]carbamate. An alternative procedure from the one given in example Z-38b follows: To a solution of Dess-Martin Periodane (564 mg, 1.33 mmol) in dichloromethane was added racemic-1,1-dimethylethyl[(1S,2R)-2-(hydroxymethyl)cyclohexyl]carbamate (305 mg, 1.33 mmol, see example Z-38a) dropwise as a solution in dichloromethane. The reaction was stirred 1 hour at ambient temperature until judged complete by TLC (1:1 hexanes:ethyl acetate KMnO4 stain). The reaction was quenched with aqueous sodium bicarbonate and sodium thiosulfate solutions, extracted with dichloromethane, and the combined organics were dried over sodium sulfate. Silica gel chromatography (0-50% ethyl acetate/hexanes gradient elution) gave racemic-1,1-dimethylethyl[(1S,2R)-2-formylcyclohexyl]carbamate (280, 93%). See example Z-38b for NMR data.
b) racemic-{[(1S,2S)-2-Aminocyclohexyl]methyl}[(2-(4-morpholinyl)ethyl]amine hydrochloride. In a manner similar to that described in example Z-38c-d from racemic-1,1-dimethylethyl[(1S,2R)-2-formylcyclohexyl]carbamate (78 mg, 0.344 mmol, prepared using the procedure from example Z-38b) and [2-(4-morpholinyl)ethyl]amine (67 mg, 0.515 mmol) was prepared racemic-{[(1S,2S)-2-aminocyclohexyl]methyl}[2-(4-morpholinyl)ethyl]amine hydrochloride (95 mg, 78% over 2 steps) as a white solid. 1H NMR (methanol-d4/CDCl3) 8.18 (br s, 1H), 3.84-3.493 (m, 11H), 3.19-3.119 (m, 5H), 2.42 (m, 1H), 2.11 (br s, 2H), 1.87-1.17 (m, 10H).
c)
a) racemic-1,1-Dimethylethyl[(1S,2R)-2-(hydroxymethyl)cyclopentyl]carbamate. racemic-(1R,2S)-2-({[1,1-Dimethylethyl)oxy]carbonyl}amino)cyclopentanecarboxylic acid (22 mg, 0.096 mmol) was dissolved in tetrahydrofuran and placed in an ice-water bath. Triethylamine was added, followed by the slow addition of methyl chloroformate. The reaction was stirred ten minutes in the ice-bath and sodium borohydride was added. Methanol was then added slowly and stirring was continued for two hours while the ice-bath expired. 1 M Potassium hydrogen sulfate was added, the reaction was partially concentrated, and product was extracted with dichloromethane. The combined organics were washed with sodium bicarbonate, brine, and dried over sodium sulfate. Removal of solvents under reduced pressure afforded racemic-1,1-dimethylethyl[(1S,2R)-2-(hydroxymethyl)cyclopentyl]carbamate (25 mg, >100%). 1H NMR (CDCl3) 4.50 (br s, 1H), 4.06 (m, 1H), 3.54 (m, 1H), 3.37 (m, 1H), 2.09 (m, 1H), 1.96 (m, 1H), 1.64 (m, 3H), 1.52 (m, 1H), 1.43 (s, 9H), 1.11 (m, 2H).
b) racemic-[(1R,2S)-2-Aminocyclopentyl]methanol hydrochloride. In a manner similar to that described in example, from racemic-1,1-dimethylethyl [(1S,2R)-2-(hydroxymethyl)cyclopentyl]carbamate and 4 N HCl was prepared racemic-[(1R,2S)-2-aminocyclopentyl]methanol hydrochloride (20 mg, quantitative). 1H NMR (methanol-d4-CDCl3) 7.76 (br s, <1H), 3.73 (m, 1H), 3.61-3.28 (m, 3H), 2.27 (br s, 1H), 2.01 (m, 2.01 (m, 1H), 1.74-1.70 (m, 2H), 1.56-1.42 (m, 2H), 1.16 (br s, 1H), 1.05 (br s, 1H).
c)
a) racemic-{[(1S,2S)-2-Aminocyclohexyl]methyl}methylamine hydrochloride. In a manner similar to that described in example Z-38c-d from racemic-1,1-dimethylethyl[(1S,2R)-2-formylcyclohexyl]-carbamate (0.410 mmol) and methyl amine (0.5 mL of a 2 M tetrahydrofuran solution) was prepared racemic-{[(1S,2S)-2-aminocyclohexyl]methyl}methylamine hydrochloride in two steps as a white solid (46 mg, 53% 2 steps). 1H NMR (methanol-d4/CDCl3) 9.05 (br s<1H), 8.72 (br s, <1H), 8.24 (br s, 1H), 3.34 (m, 1H), 3.29 (m, 1H), 2.85 (br s, 1H), 2.66 (br s, 4H), 2.38 (br s, 1H), 2.07-1.83 (m, 2H), 1.67-1.14 (m, 6H),
b)
a) racemic-N-[2-({[(1S,2S)-2-Aminocyclohexyl]methyl}amino)ethyl]acetamide hydrochloride. In a manner similar to that described in example Z-38c-d from racemic-1,1-dimethylethyl[(1S,2R)-2-formylcyclohexyl]carbamate (93 mg, 0.41 mmol) and N-(2-aminoethyl)acetamide (63 mg, 0.615 mmol), racemic-N-[2-({[(1S,2S)-2-aminocyclohexyl]methyl}amino)ethyl]acetamide hydrochloride was prepared in two steps as a white solid (82 mg), 71% 2 steps). 1H NMR (methanol-d4/CDCl3) 8.86 (br s, 1H), 8.29 (br s, 1H), 3.62-3.51 (m, 3H), 3.40-3.28 (m, 4H), 3.22-2.93 (m, 3H), 2.47 (m, 1H), 2.08-2.06 (m, 4H), 1.83-1.75 (m, 2H), 1.56-1.44 (m, 3H), 1.23 (m, 1H).
b)
a) [(3S)-3-Aminobutyl]cyclobutylamine dihydrochloride was prepared in a similar manner as described in example Z-47. 1H NMR (400 MHz, CDCl3/CD3OD) δ 1.23 (d, J=6.4 Hz, 3H), 1.69-2.26 (m, 8H), 2.83 (m, 2H), 3.31-3.33 (m, 1H), 3.55 (m, 1H), 8.08 (br, <1H), 9.07 (br. <1H),
b)
a) [(3S)-3-Aminobutyl]tetrahydro-2H-thiopyran-4-ylamine dihydrochloride was prepared in a similar manner as described in example Z-47. 1H NMR (400 MHz, CDCl3/CD3OD) δ 1.21 (d, J=6.4 Hz, 3H), 1.65-1.75 (m, 2H), 1.90-2.10 (m, 2H), 2.35 (m, 2H), 2.56-2.61 (m, 4H), 2.92-2.98 (m, 3H), 3.27-3.31 (m, 1H), 8.05 (br, <1H), 8.90 (br, <1H).
b)
a) [(3S)-3-Amino-5-methylhexyl](2-methylpropyl)amine dihydrochloride was prepared in a similar manner as described in example Z-32. 1H NMR (400 MHz, CDCl3/CD3OD) δ 0.87 (d, J=6.4 Hz, 6H), 0.97 (d, J=6.8 Hz, 6H), 1.34-1.41 (m, 1H), 1.45-1.52 (m, 1H), 1.58-1.66 (m, 1H), 2.01-2.13 (m, 2H), 2.72-2.73 (m, 2H), 3.03-3.06 (m, 2H), 3.29 (m, 2H), 8.07 (br, <1H), 8.71 (br, <1H).
b)
a) racemic-2-({[(1S,2S)-2-Aminocyclohexyl]methyl}amino)ethanol hydrochloride. In a manner similar to that described in example Z-55a, from racemic-1,1-dimethylethyl [(1S,2R)-2-formylcyclohexyl]carbamate (112 mg, 0.497 mmol) and 2-aminoethanol (0.04 mL 0.746 mmol) was prepared racemic-2-({[(1S,2S)-2-aminocyclohexyl]methyl}amino)ethanol bis-hydrochloride in two steps (102 mg, 84% over 2 steps). 1H NMR (methanol-d4/CDCl3) 8.81-8.40 (m, <2H), 8.16 (br s, 1H), 4.02-3.93 (m, 2H), 3.80 (br s, 2H), 3.53 (m, 1H), 3.36-2.93 (m, 6H), 2.41 (br s, 1H), 2.05 (m, 1H), 1.75-1.41 (m, 4H).
b)
a) racemic-(1S,2S)-2-[(Cyclopropylamino)methyl]cyclohexanamine hydrochloride. In a manner similar to that described in example Z-55a, from racemic-1,1-dimethylethyl[(1S,2R)-2-formylcyclohexyl]carbamate (112 mg, 0.497 mmol) and cyclopropylamine (0.05 mL, 0.746 mmol) was prepared racemic-(1S,2S)-2-[(cyclopropylamino)methyl]cyclohexanamine bis hydrochloride salt in two steps (102 mg, 86% over 2 steps). This material was used without further purification. 1H NMR (methanol-d4/CDCl3) 8.31 (br s, 1H), 3.75 (br s, 1H), 3.54 (m, 1H), 2.96 (m, 1H), 2.71 (m, 1H), 2.27 (m, 1H), 1.94 (m, 1H), 1.76-1.15 (m, 8H), 0.88-0.78 (m, 3H).
b)
a) racemic-(1S,2S)-2-({[(2-(1-Pyrrolidinyl)ethyl]amino}methyl)cyclohexanamine hydrochloride. In a manner similar to that described in example Z-55a, from racemic-1,1-dimethylethyl[(1S,2R)-2-formylcyclohexyl]carbamate (112 mg, 0.497 mmol) and 2-(1-pyrrolidinyl)ethanamine (0.09 mL, 0.746 mmol) was prepared racemic-(1S,2S)-2-({[2-(1-pyrrolidinyl)ethyl]amino}methyl)cyclohexanamine (88 mg, 60% 2 steps) as the bis hydrochloride salt in two steps as a white solid. 1H NMR (methanol-d4/CDCl3) 9.68 (br s, <1H), 9.24 (br s, <1H), 8.25 (br s, 1H), 3.75-3.04 (m, 11H), 2.37 (br s, 1H), 2.06-1.20 (m, 12H).
b)
a) {2-[(2S)-2-Piperidinyl]ethyl}amine. This compound was prepared in a similar manner as its enantiomer described in example Z-42a.
b)
a) [(3S)-3-Aminobutyl][2-(methyloxy)ethyl]amine bis hydrochloride. In a manner similar to that described in example Z-47, from 1,1-dimethylethyl [(1S)-1-methyl-3-oxopropyl]carbamate (76 mg, 0.406 mmol) and 2-(methyloxy)ethyl]amine (0.05 mL, 0.609 mmol) was prepared [(3S)-3-aminobutyl][2-(methyloxy)ethyl]amine as the bis hydrochloride salt in two steps (19 mg, quantitative). 1H NMR (methanol-d4/CDCl3) δ 9.02 (<1H), 8.24 (<1H), 3.68 (br s, 2H), 3.49 (br s, 1H), 3.34 (br s, 4H), 3.15 (br s, 4H), 2.26-2.11 (m, 2H), 1.35 (brs, 3H),
b)
a) [(3S)-3-Aminobutyl]cyclobutylamine bis-hydrochloride. In a manner similar to that described in example Z-47, from 1,1-dimethylethyl [(1S)-1-methyl-3-oxopropyl]carbamate (76 mg, 0.406 mmol) and cyclobutylamine (0.05 mL, 0.609 mmol) was prepared [(3S)-3-Aminobutyl]cyclobutylamine bis-hydrochloride in two steps (23 mg, 27%). 1H NMR (methanol-d4/CDCl3) δ 8.86 (s, <1H), 7.97 (s, <1H), 3.46 (m, 1H), 3.21 (m, 1H), 2.74 (m, 2H), 2.14-2.08 (m, 4H), 1.94-1.62 (m, 5H), 1.13 (d, J=6 Hz, 1H).
b)
a) [(3S)-3-Aminobutyl](2-methylpropyl)amine bis-hydrochloride. In a manner similar to that described in example Z-47, this compound was prepared from 1,1-dimethylethyl[(1S)-1-methyl-3-oxopropyl]carbamate (76 mg, 0.406 mmol) and (2-methylpropyl)amine (0.06 mL, 0.609 mmol) in two steps as the bis-hydrochloride salt (22 mg, 25%). 1H NMR (methanol-d4/CDCl3) δ 3.25 (br s, 1H), 2.91 (br s, 2H), 2.64 (m, 2H), 2.02-1.93 (m, 3H), 1.17 (m, 3H), 0.88 (m, 6H).
b)
a) [(3S)-3-Aminobutyl]methylamine bis-hydrochloride. In a manner similar to that described in example Z-47, this compound was prepared from 1,1-dimethylethyl [(1S)-1-methyl-3-oxopropyl]carbamate (76 mg, 0.409 mmol) and excess methylamine (2 M in tetrahydrofuran) in two steps as the bis hydrochloride salt (17% 2 steps). 1H NMR (methanol-d4/CDCl3) δ 3.16 (m, 1H), 3.08 (s, 2H), 2.83 (m, 2H), 2.45 (s, 3H), 1.88 (m, 1H), 1.75 (m, 1H), 1.09 (m, 3H).
b)
a) [(3S)-3-Aminobutyl]methylamine dihydrochloride was prepared in a similar manner as described in example Z-47. 1H NMR (400 MHz, CDCl3) δ 1.18 (d, J=6.8 Hz, 3H), 1.82-1.91 (m, 1H), 1.94-2.03 (m, 1H), 2.53 (s, 3H), 2.89-2.93 (m, 2H), 3.22-3.30 (m, 1H), 8.02 (br, <1H), 8.81 (br, <1H).
b)
TABLE A | ||
Example | Observed LC/MS or HPLC | |
No. | Structure | data |
ZZ-1 |
|
ES+ MS: 419 (M + 1) |
ZZ-2 |
|
ES+ MS: 406 (M + 1) |
ZZ-3 |
|
ES+ MS: 509 (M + 1) |
ZZ-4 |
|
ES+ MS: 429 (M + 1) |
ZZ-5 |
|
ES+ MS: 415 (M + 1) |
ZZ-6 |
|
ES+ MS: 491 (M + 1) |
ZZ-7 |
|
ES+ MS: 509 (M + 1) |
ZZ-8 |
|
ES+ MS: 443 (M + 1) |
ZZ-9 |
|
ES+ MS: 461 (M + 1) |
ZZ-10 |
|
ES+ MS: 501 (M + 1) |
ZZ-11 |
|
ES+ MS: 475 (M + 1) |
ZZ-12 |
|
ES+ MS: 489 (M + 1) |
ZZ-13 |
|
ES+ MS: 460 (M + 1) |
ZZ-14 |
|
ES+ MS: 442 (M + 1) |
ZZ-15 |
|
ES+ MS: 489 (M + 1) |
ZZ-16 |
|
8.174 & 8.295 min. |
ZZ-17 |
|
ES+ MS: 461 (M + 1) |
ZZ-18 |
|
ES+ MS: 447 (M + 1) |
ZZ-19 |
|
ES+ MS: 446 (M + 1) |
ZZ-20 |
|
ES+ MS: 432 (M + 1) |
ZZ-21 |
|
7.368 min |
ZZ-22 |
|
7.150 min |
ZZ-23 |
|
ES+ MS: 447 (M + 1) |
ZZ-24 |
|
ES+ MS: 447 (M + 1) |
TABLE B | |
(I-7) | |
|
|
No | (R)m | Ra |
1 | 4-F | —CH3 |
2 | 4-F | —CH(CH3)2 |
3 | 4-F | —CH2CH2OCH3 |
4 | 2,4-F | —CH3 |
5 | 2,4-F | —CH(CH3)2 |
6 | 2,4-F | —CH2CH2OCH3 |
7 | 2-F, 3-Cl | —CH3 |
8 | 2-F, 3-Cl | —CH(CH3)2 |
9 | 2-F, 3-Cl | —CH2CH2OCH3 |
Inhibition rate (%)=100[1−{(C abs.−NC abs.)/(PC abs.−NC abs.)}]
TABLE 1 | ||
Integrase inhibitory activity | ||
Example No. | (IC50, ng/ml) | |
C-2 | 3.3 | |
F-2 | 3.8 | |
H-2 | 3.2 | |
TABLE 2 | ||
PHIV IC50 | ||
* = <10 nM, | ||
Example | ** = 10-100 nM, | |
number | *** >100 nM | |
Z-1 | * | |
Z-2 | * | |
Z-3 | * | |
Z-4 | * | |
Z-5 | * | |
Z-6 | * | |
Z-7 | * | |
Z-8 | ** | |
Z-9 | * | |
Z-10 | * | |
Z-11 | * | |
Z-12 | * | |
Z-13 | ** | |
Z-14 | ** | |
Z-15 | * | |
Z-16 | * | |
Z-17 | * | |
Z-18 | * | |
Z-19 | * | |
Z-20 | ** | |
Z-21 | * | |
Z-22 | * | |
Z-23 | * | |
Z-24 | * | |
Z-25 | * | |
Z-26 | * | |
Z-27 | *** | |
Z-28 | * | |
Z-29 | * | |
Z-30 | * | |
Z-31 | * | |
Z-32 | * | |
Z-33 | * | |
Z-34 | * | |
Z-35 | * | |
Z-36 | * | |
Z-37 | * | |
Z-38 | ** | |
Z-39 | * | |
Z-40 | * | |
Z-41 | * | |
Z-42 | * | |
Z-43 | * | |
Z-44 | * | |
Z-45 | * | |
Z-46 | * | |
Z-47 | * | |
Z-48 | * | |
Z-49 | * | |
Z-50 | * | |
Z-51 | * | |
Z-52 | * | |
Z-53 | * | |
Z-54 | * | |
Z-55 | ** | |
Z-59 | * | |
Z-60 | * | |
dose | |
(mg/capsule) | |
Active ingredient | 250 | |
Starch (dried) | 200 | |
Magnesium stearate | 10 | |
Total | 460 mg | |
dose | |
(mg/tablet) | |
Active ingredient | 250 | |
Cellulose (microcrystalline) | 400 | |
Silicon dioxide (fumed) | 10 | |
Stearic acid | 5 | |
Total | 665 mg | |
Claims (11)
Priority Applications (20)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US13/352,686 US8410103B2 (en) | 2005-04-28 | 2012-01-18 | (3S,11aR)-N-[2,4-difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide useful as anti-HIV agent |
US13/763,174 US8778943B2 (en) | 2005-04-28 | 2013-02-08 | Substituted 10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1h-pyrido[1,2-α]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamides |
US14/211,364 US9051337B2 (en) | 2005-04-28 | 2014-03-14 | Substituted 10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1h-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamides |
US14/700,679 US9273065B2 (en) | 2005-04-28 | 2015-04-30 | Substituted pyrido[1',2':4,5]pyrazino[1,2-a]pyrimidines as HIV integrase inhibitors |
US15/001,336 US20160137666A1 (en) | 2005-04-28 | 2016-01-20 | SUBSTITUTED CYCLOPENTA[4,5]OXAZOLO[3,2-a]PYRIDO[1,2-d]PYRAZINES AS HIV INTEGRASE INHIBITORS |
US15/086,616 US20160207939A1 (en) | 2005-04-28 | 2016-03-31 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/196,245 US20160304535A1 (en) | 2005-04-28 | 2016-06-29 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/290,094 US20170029438A1 (en) | 2005-04-28 | 2016-10-11 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/427,184 US20170145033A1 (en) | 2005-04-28 | 2017-02-08 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/482,896 US20170209454A1 (en) | 2005-04-28 | 2017-04-10 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/498,684 US20170224695A1 (en) | 2005-04-28 | 2017-04-27 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/498,667 US20170224694A1 (en) | 2005-04-28 | 2017-04-27 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/597,343 US20170253616A1 (en) | 2005-04-28 | 2017-05-17 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/598,671 US20170267693A1 (en) | 2005-04-28 | 2017-05-18 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/598,655 US20170260203A1 (en) | 2005-04-28 | 2017-05-18 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/697,847 US20170369509A1 (en) | 2005-04-28 | 2017-09-07 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US16/244,441 US20190152990A1 (en) | 2005-04-28 | 2019-01-10 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US16/400,373 US10927129B2 (en) | 2005-04-28 | 2019-05-01 | N-[(2,4-difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3] oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide having HIV integrase inhibitory activity |
US17/586,006 US20220213121A1 (en) | 2005-04-28 | 2022-01-27 | SUBSTITUTED 1,2,3,3a,4,5,7,9,13,13a-DECAHYDROPYRIDO[1',2':4,5]PYRAZINO[1,2-a]PYRROLO[1,2-c]PYRIMIDINES HAVING HIV INTEGRASE INHIBITORY ACTIVITY |
US18/630,561 US20240279238A1 (en) | 2005-04-28 | 2024-04-09 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
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JP2005-131161 | 2005-04-28 | ||
JP2005131161 | 2005-04-28 | ||
JP2005312076 | 2005-10-27 | ||
JP2005-312076 | 2005-10-27 | ||
PCT/US2006/016604 WO2006116764A1 (en) | 2005-04-28 | 2006-04-28 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
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PCT/US2006/016604 A-371-Of-International WO2006116764A1 (en) | 2005-04-28 | 2006-04-28 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
JPPCT/JP2006/001664 A-371-Of-International | 2005-04-28 | 2006-04-28 |
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US13/352,686 Division US8410103B2 (en) | 2005-04-28 | 2012-01-18 | (3S,11aR)-N-[2,4-difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide useful as anti-HIV agent |
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US8129385B2 true US8129385B2 (en) | 2012-03-06 |
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US11/919,386 Active 2027-10-05 US8129385B2 (en) | 2005-04-28 | 2006-04-28 | Substituted 5-hydroxy-3,4,6,9,9a, 10-hexanhydro-2h-1-oxa04a,8a-diaza-anthracene-6,10-dioness |
US13/352,686 Active US8410103B2 (en) | 2005-04-28 | 2012-01-18 | (3S,11aR)-N-[2,4-difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide useful as anti-HIV agent |
US13/763,174 Active US8778943B2 (en) | 2005-04-28 | 2013-02-08 | Substituted 10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1h-pyrido[1,2-α]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamides |
US14/211,364 Active US9051337B2 (en) | 2005-04-28 | 2014-03-14 | Substituted 10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1h-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamides |
US14/700,679 Active US9273065B2 (en) | 2005-04-28 | 2015-04-30 | Substituted pyrido[1',2':4,5]pyrazino[1,2-a]pyrimidines as HIV integrase inhibitors |
US15/001,336 Abandoned US20160137666A1 (en) | 2005-04-28 | 2016-01-20 | SUBSTITUTED CYCLOPENTA[4,5]OXAZOLO[3,2-a]PYRIDO[1,2-d]PYRAZINES AS HIV INTEGRASE INHIBITORS |
US15/086,616 Abandoned US20160207939A1 (en) | 2005-04-28 | 2016-03-31 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/196,245 Abandoned US20160304535A1 (en) | 2005-04-28 | 2016-06-29 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/290,094 Abandoned US20170029438A1 (en) | 2005-04-28 | 2016-10-11 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/427,184 Abandoned US20170145033A1 (en) | 2005-04-28 | 2017-02-08 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/482,896 Abandoned US20170209454A1 (en) | 2005-04-28 | 2017-04-10 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/498,667 Abandoned US20170224694A1 (en) | 2005-04-28 | 2017-04-27 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/498,684 Abandoned US20170224695A1 (en) | 2005-04-28 | 2017-04-27 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/597,343 Abandoned US20170253616A1 (en) | 2005-04-28 | 2017-05-17 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/598,671 Abandoned US20170267693A1 (en) | 2005-04-28 | 2017-05-18 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/598,655 Abandoned US20170260203A1 (en) | 2005-04-28 | 2017-05-18 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/697,847 Abandoned US20170369509A1 (en) | 2005-04-28 | 2017-09-07 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US16/244,441 Abandoned US20190152990A1 (en) | 2005-04-28 | 2019-01-10 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US16/400,373 Active 2026-08-04 US10927129B2 (en) | 2005-04-28 | 2019-05-01 | N-[(2,4-difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3] oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide having HIV integrase inhibitory activity |
US16/924,390 Active US11267823B2 (en) | 2005-04-28 | 2020-07-09 | Substituted 1,2,3,3a,4,5,7,9,13,13a-decahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrrolo[1,2-c]pyrimidines having HIV integrase inhibitory activity |
US17/586,006 Abandoned US20220213121A1 (en) | 2005-04-28 | 2022-01-27 | SUBSTITUTED 1,2,3,3a,4,5,7,9,13,13a-DECAHYDROPYRIDO[1',2':4,5]PYRAZINO[1,2-a]PYRROLO[1,2-c]PYRIMIDINES HAVING HIV INTEGRASE INHIBITORY ACTIVITY |
US18/630,561 Pending US20240279238A1 (en) | 2005-04-28 | 2024-04-09 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
Family Applications After (21)
Application Number | Title | Priority Date | Filing Date |
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US13/352,686 Active US8410103B2 (en) | 2005-04-28 | 2012-01-18 | (3S,11aR)-N-[2,4-difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3]oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide useful as anti-HIV agent |
US13/763,174 Active US8778943B2 (en) | 2005-04-28 | 2013-02-08 | Substituted 10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1h-pyrido[1,2-α]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamides |
US14/211,364 Active US9051337B2 (en) | 2005-04-28 | 2014-03-14 | Substituted 10-hydroxy-9,11-dioxo-2,3,4a,5,9,11,13,13a-octahydro-1h-pyrido[1,2-a]pyrrolo[1′,2′:3,4]imidazo[1,2-d]pyrazine-8-carboxamides |
US14/700,679 Active US9273065B2 (en) | 2005-04-28 | 2015-04-30 | Substituted pyrido[1',2':4,5]pyrazino[1,2-a]pyrimidines as HIV integrase inhibitors |
US15/001,336 Abandoned US20160137666A1 (en) | 2005-04-28 | 2016-01-20 | SUBSTITUTED CYCLOPENTA[4,5]OXAZOLO[3,2-a]PYRIDO[1,2-d]PYRAZINES AS HIV INTEGRASE INHIBITORS |
US15/086,616 Abandoned US20160207939A1 (en) | 2005-04-28 | 2016-03-31 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/196,245 Abandoned US20160304535A1 (en) | 2005-04-28 | 2016-06-29 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/290,094 Abandoned US20170029438A1 (en) | 2005-04-28 | 2016-10-11 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/427,184 Abandoned US20170145033A1 (en) | 2005-04-28 | 2017-02-08 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/482,896 Abandoned US20170209454A1 (en) | 2005-04-28 | 2017-04-10 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/498,667 Abandoned US20170224694A1 (en) | 2005-04-28 | 2017-04-27 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/498,684 Abandoned US20170224695A1 (en) | 2005-04-28 | 2017-04-27 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/597,343 Abandoned US20170253616A1 (en) | 2005-04-28 | 2017-05-17 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/598,671 Abandoned US20170267693A1 (en) | 2005-04-28 | 2017-05-18 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/598,655 Abandoned US20170260203A1 (en) | 2005-04-28 | 2017-05-18 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US15/697,847 Abandoned US20170369509A1 (en) | 2005-04-28 | 2017-09-07 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US16/244,441 Abandoned US20190152990A1 (en) | 2005-04-28 | 2019-01-10 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
US16/400,373 Active 2026-08-04 US10927129B2 (en) | 2005-04-28 | 2019-05-01 | N-[(2,4-difluorophenyl)methyl]-6-hydroxy-3-methyl-5,7-dioxo-2,3,5,7,11,11a-hexahydro[1,3] oxazolo[3,2-a]pyrido[1,2-d]pyrazine-8-carboxamide having HIV integrase inhibitory activity |
US16/924,390 Active US11267823B2 (en) | 2005-04-28 | 2020-07-09 | Substituted 1,2,3,3a,4,5,7,9,13,13a-decahydropyrido[1′,2′:4,5]pyrazino[1,2-a]pyrrolo[1,2-c]pyrimidines having HIV integrase inhibitory activity |
US17/586,006 Abandoned US20220213121A1 (en) | 2005-04-28 | 2022-01-27 | SUBSTITUTED 1,2,3,3a,4,5,7,9,13,13a-DECAHYDROPYRIDO[1',2':4,5]PYRAZINO[1,2-a]PYRROLO[1,2-c]PYRIMIDINES HAVING HIV INTEGRASE INHIBITORY ACTIVITY |
US18/630,561 Pending US20240279238A1 (en) | 2005-04-28 | 2024-04-09 | Polycyclic carbamoylpyridone derivative having hiv integrase inhibitory activity |
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